MapReduceMappingsToDoubleTask class

Пакет: com.hypixel.fastutil.floats

Файл: com/hypixel/fastutil/floats/Float2ObjectConcurrentHashMap.java

extends: Float2ObjectConcurrentHashMap.DoubleReturningBulkTask<V>

Поля (13)

МодификаторыТипИмя
public final double basis
break
public Float2ObjectConcurrentHashMap.MapReduceMappingsToDoubleTask<V> nextRight
public final DoubleBinaryOperator reducer
public Float2ObjectConcurrentHashMap.MapReduceMappingsToDoubleTask<V> rights
Float2ObjectConcurrentHashMap.ToDoubleFloatObjFunction var1
Float2ObjectConcurrentHashMap.MapReduceMappingsToDoubleTask var10
DoubleBinaryOperator var2
double var3
var3
int var5
int var6
int var7

Методы (9)

МодификаторыВозвратСигнатура
abstract throw new UnsupportedOperationExceptionthrow new UnsupportedOperationException()
public final void computepublic final void compute()
for for(Float2ObjectConcurrentHashMap.MapReduceMappingsToDoubleTask var11 = var10.rights; var11 != null; var11 = var10.rights = var11.nextRight)
abstract for for(CountedCompleter var9 = this.firstComplete()
public final Double getRawResultpublic final Double getRawResult()
if if(this.transformer != null)
if if(this.reducer != null)
abstract super super(var1, var2, var3, var4, var5)
while while(this.batch > 0)

Исходный код

Показать/скрыть
class="kw">package com.hypixel.fastutil.floats;

class="kw">import com.hypixel.fastutil.FastCollection;
class="kw">import com.hypixel.fastutil.util.SneakyThrow;
class="kw">import com.hypixel.fastutil.util.TLRUtil;
class="kw">import it.unimi.dsi.fastutil.floats.Float2ObjectMap;
class="kw">import it.unimi.dsi.fastutil.floats.FloatCollection;
class="kw">import it.unimi.dsi.fastutil.floats.FloatConsumer;
class="kw">import it.unimi.dsi.fastutil.floats.FloatIterator;
class="kw">import it.unimi.dsi.fastutil.floats.FloatSet;
class="kw">import it.unimi.dsi.fastutil.floats.FloatSpliterator;
class="kw">import it.unimi.dsi.fastutil.objects.ObjectCollection;
class="kw">import it.unimi.dsi.fastutil.objects.ObjectIterator;
class="kw">import it.unimi.dsi.fastutil.objects.ObjectSet;
class="kw">import it.unimi.dsi.fastutil.objects.ObjectSpliterator;
class="kw">import java.io.Serializable;
class="kw">import java.lang.reflect.Array;
class="kw">import java.lang.reflect.Field;
class="kw">import java.util.Arrays;
class="kw">import java.util.Collection;
class="kw">import java.util.Enumeration;
class="kw">import java.util.Iterator;
class="kw">import java.util.Map;
class="kw">import java.util.NoSuchElementException;
class="kw">import java.util.Set;
class="kw">import java.util.concurrent.CountedCompleter;
class="kw">import java.util.concurrent.ForkJoinPool;
class="kw">import java.util.concurrent.atomic.AtomicReference;
class="kw">import java.util.concurrent.locks.LockSupport;
class="kw">import java.util.concurrent.locks.ReentrantLock;
class="kw">import java.util.function.BiFunction;
class="kw">import java.util.function.Consumer;
class="kw">import java.util.function.DoubleBinaryOperator;
class="kw">import java.util.function.Function;
class="kw">import java.util.function.IntBinaryOperator;
class="kw">import java.util.function.LongBinaryOperator;
class="kw">import java.util.function.Predicate;
class="kw">import java.util.function.ToDoubleFunction;
class="kw">import java.util.function.ToIntFunction;
class="kw">import java.util.function.ToLongFunction;
class="kw">import sun.misc.Unsafe;

class="kw">public class Float2ObjectConcurrentHashMap<V> {
   class="kw">protected class="kw">static class="kw">final long serialVersionUID = 7249069246763182397L;
   class="kw">protected class="kw">static class="kw">final int MAXIMUM_CAPACITY = 1073741824;
   class="kw">protected class="kw">static class="kw">final int DEFAULT_CAPACITY = 16;
   class="kw">protected class="kw">static class="kw">final int MAX_ARRAY_SIZE = 2147483639;
   class="kw">protected class="kw">static class="kw">final int DEFAULT_CONCURRENCY_LEVEL = 16;
   class="kw">protected class="kw">static class="kw">final float LOAD_FACTOR = 0.75F;
   class="kw">protected class="kw">static class="kw">final int TREEIFY_THRESHOLD = 8;
   class="kw">protected class="kw">static class="kw">final int UNTREEIFY_THRESHOLD = 6;
   class="kw">protected class="kw">static class="kw">final int MIN_TREEIFY_CAPACITY = 64;
   class="kw">protected class="kw">static class="kw">final int MIN_TRANSFER_STRIDE = 16;
   class="kw">protected class="kw">static int RESIZE_STAMP_BITS = 16;
   class="kw">protected class="kw">static class="kw">final int MAX_RESIZERS = (1 << 32 - RESIZE_STAMP_BITS) - 1;
   class="kw">protected class="kw">static class="kw">final int RESIZE_STAMP_SHIFT = 32 - RESIZE_STAMP_BITS;
   class="kw">protected class="kw">static class="kw">final int MOVED = -1;
   class="kw">protected class="kw">static class="kw">final int TREEBIN = -2;
   class="kw">protected class="kw">static class="kw">final int RESERVED = -3;
   class="kw">protected class="kw">static class="kw">final int HASH_BITS = Integer.MAX_VALUE;
   class="kw">protected class="kw">static class="kw">final int NCPU = Runtime.getRuntime().availableProcessors();
   class="kw">protected class="kw">transient class="kw">volatile Float2ObjectConcurrentHashMap.Node<V>[] table;
   class="kw">protected class="kw">transient class="kw">volatile Float2ObjectConcurrentHashMap.Node<V>[] nextTable;
   class="kw">protected class="kw">transient class="kw">volatile long baseCount;
   class="kw">protected class="kw">transient class="kw">volatile int sizeCtl;
   class="kw">protected class="kw">transient class="kw">volatile int transferIndex;
   class="kw">protected class="kw">transient class="kw">volatile int cellsBusy;
   class="kw">protected class="kw">transient class="kw">volatile Float2ObjectConcurrentHashMap.CounterCell[] counterCells;
   class="kw">protected class="kw">transient Float2ObjectConcurrentHashMap.KeySetView<V> keySet;
   class="kw">protected class="kw">transient Float2ObjectConcurrentHashMap.ValuesView<V> values;
   class="kw">protected class="kw">transient Float2ObjectConcurrentHashMap.EntrySetView<V> entrySet;
   class="kw">protected class="kw">final float EMPTY;
   class="kw">protected class="kw">static class="kw">final Unsafe U;
   class="kw">protected class="kw">static class="kw">final long SIZECTL;
   class="kw">protected class="kw">static class="kw">final long TRANSFERINDEX;
   class="kw">protected class="kw">static class="kw">final long BASECOUNT;
   class="kw">protected class="kw">static class="kw">final long CELLSBUSY;
   class="kw">protected class="kw">static class="kw">final long CELLVALUE;
   class="kw">protected class="kw">static class="kw">final long ABASE;
   class="kw">protected class="kw">static class="kw">final int ASHIFT;

   class="kw">protected class="kw">static class="kw">final int spread(int var0) {
      class="kw">return (var0 ^ var0 >>> 16) & 2147483647;
   }

   class="kw">protected class="kw">static class="kw">final int tableSizeFor(int var0) {
      int var1 = var0 - 1;
      var1 |= var1 >>> 1;
      var1 |= var1 >>> 2;
      var1 |= var1 >>> 4;
      var1 |= var1 >>> 8;
      var1 |= var1 >>> 16;
      class="kw">return var1 < 0 ? 1 : (var1 >= 1073741824 ? 1073741824 : var1 + 1);
   }

   class="kw">protected class="kw">static class="kw">final <V> Float2ObjectConcurrentHashMap.Node<V> tabAt(Float2ObjectConcurrentHashMap.Node<V>[] var0, int var1) {
      class="kw">return (Float2ObjectConcurrentHashMap.Node<V>)U.getObjectVolatile(var0, ((long)var1 << ASHIFT) + ABASE);
   }

   class="kw">protected class="kw">static class="kw">final <V> boolean casTabAt(
      Float2ObjectConcurrentHashMap.Node<V>[] var0, int var1, Float2ObjectConcurrentHashMap.Node<V> var2, Float2ObjectConcurrentHashMap.Node<V> var3
   ) {
      class="kw">return U.compareAndSwapObject(var0, ((long)var1 << ASHIFT) + ABASE, var2, var3);
   }

   class="kw">protected class="kw">static class="kw">final <V> void setTabAt(Float2ObjectConcurrentHashMap.Node<V>[] var0, int var1, Float2ObjectConcurrentHashMap.Node<V> var2) {
      U.putObjectVolatile(var0, ((long)var1 << ASHIFT) + ABASE, var2);
   }

   class="kw">public Float2ObjectConcurrentHashMap() {
      this.EMPTY = -1.0F;
   }

   class="kw">public Float2ObjectConcurrentHashMap(boolean var1, float var2) {
      this.EMPTY = var2;
   }

   class="kw">public Float2ObjectConcurrentHashMap(int var1) {
      this(var1, true, -1.0F);
   }

   class="kw">public Float2ObjectConcurrentHashMap(int var1, boolean var2, float var3) {
      if (var1 < 0) {
         throw new IllegalArgumentException();
      }

      int var4 = var1 >= 536870912 ? 1073741824 : tableSizeFor(var1 + (var1 >>> 1) + 1);
      this.sizeCtl = var4;
      this.EMPTY = var3;
   }

   class="kw">public Float2ObjectConcurrentHashMap(Map<? class="kw">extends Float, ? class="kw">extends V> var1, float var2) {
      this.sizeCtl = 16;
      this.EMPTY = var2;
      this.putAll(var1);
   }

   class="kw">public Float2ObjectConcurrentHashMap(Float2ObjectConcurrentHashMap<? class="kw">extends V> var1) {
      this.sizeCtl = 16;
      this.EMPTY = var1.EMPTY;
      this.putAll(var1);
   }

   class="kw">public Float2ObjectConcurrentHashMap(Float2ObjectMap<V> var1) {
      this.sizeCtl = 16;
      this.EMPTY = -1.0F;
      this.putAll(var1);
   }

   class="kw">public Float2ObjectConcurrentHashMap(Float2ObjectMap<V> var1, float var2) {
      this.sizeCtl = 16;
      this.EMPTY = var2;
      this.putAll(var1);
   }

   class="kw">public Float2ObjectConcurrentHashMap(int var1, float var2) {
      this(var1, var2, 1, -1.0F);
   }

   class="kw">public Float2ObjectConcurrentHashMap(int var1, float var2, int var3, float var4) {
      if (var2 > 0.0F && var1 >= 0 && var3 > 0) {
         if (var1 < var3) {
            var1 = var3;
         }

         long var5 = (long)(1.0 + (float)var1 / var2);
         int var7 = var5 >= 1073741824L ? 1073741824 : tableSizeFor((int)var5);
         this.sizeCtl = var7;
         this.EMPTY = var4;
      } else {
         throw new IllegalArgumentException();
      }
   }

   class="kw">public int size() {
      long var1 = this.sumCount();
      class="kw">return var1 < 0L ? 0 : (var1 > 2147483647L ? Integer.MAX_VALUE : (int)var1);
   }

   class="kw">public boolean isEmpty() {
      class="kw">return this.sumCount() <= 0L;
   }

   class="kw">public V get(float var1) {
      if (var1 == this.EMPTY) {
         throw new IllegalArgumentException("Key is EMPTY: " + this.EMPTY);
      }

      int var8 = spread(Float.hashCode(var1));
      Float2ObjectConcurrentHashMap.Node[] var2 = this.table;
      Float2ObjectConcurrentHashMap.Node var3;
      int var5;
      if (this.table != null && (var5 = var2.length) > 0 && (var3 = tabAt(var2, var5 - 1 & var8)) != null) {
         int var6 = var3.hash;
         if (var3.hash == var8) {
            float var7 = var3.key;
            if (var3.key == var1 || var7 != this.EMPTY && var1 == var7) {
               class="kw">return var3.val;
            }
         } else if (var6 < 0) {
            Float2ObjectConcurrentHashMap.Node var4;
            class="kw">return (var4 = var3.find(var8, var1)) != null ? var4.val : null;
         }

         while ((var3 = var3.next) != null) {
            if (var3.hash == var8) {
               float var9 = var3.key;
               if (var3.key == var1 || var9 != this.EMPTY && var1 == var9) {
                  class="kw">return var3.val;
               }
            }
         }
      }

      class="kw">return null;
   }

   class="kw">public boolean containsKey(float var1) {
      class="kw">return this.get(var1) != null;
   }

   class="kw">public boolean containsValue(Object var1) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      Float2ObjectConcurrentHashMap.Node[] var2 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var3 = var2;
         Float2ObjectConcurrentHashMap.Node var4 = null;
         Float2ObjectConcurrentHashMap.TableStack var5 = null;
         Float2ObjectConcurrentHashMap.TableStack var6 = null;
         int var7 = 0;
         int var8 = 0;
         int var9 = var2.length;
         int var10 = var2.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var11 = null;
            var11 = var4;
            if (var4 != null) {
               var11 = var11.next;
            }

            label85:
            while (true) {
               if (var11 != null) {
                  var4 = var11;
                  break;
               }

               if (var8 < var9) {
                  Float2ObjectConcurrentHashMap.Node[] var12 = var3;
                  if (var3 != null) {
                     int var14;
                     int var10000 = var14 = var12.length;
                     int var13 = var7;
                     if (var10000 > var7 && var13 >= 0) {
                        if ((var11 = tabAt(var12, var13)) != null && var11.hash < 0) {
                           if (var11 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                              var3 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var11).nextTable;
                              var11 = null;
                              Float2ObjectConcurrentHashMap.TableStack var20 = var6;
                              if (var20 != null) {
                                 var6 = var20.next;
                              } else {
                                 var20 = new Float2ObjectConcurrentHashMap.TableStack<>();
                              }

                              var20.tab = var12;
                              var20.length = var14;
                              var20.index = var13;
                              var20.next = var5;
                              var5 = var20;
                              class="kw">continue;
                           }

                           if (var11 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                              var11 = ((Float2ObjectConcurrentHashMap.TreeBin)var11).first;
                           } else {
                              var11 = null;
                           }
                        }

                        if (var5 == null) {
                           if ((var7 = var13 + var10) >= var14) {
                              var7 = ++var8;
                           }
                           class="kw">continue;
                        }

                        while (true) {
                           Float2ObjectConcurrentHashMap.TableStack var15 = var5;
                           if (var5 != null) {
                              int var16 = var15.length;
                              if ((var7 += var15.length) >= var14) {
                                 var14 = var16;
                                 var7 = var15.index;
                                 var3 = var15.tab;
                                 var15.tab = null;
                                 Float2ObjectConcurrentHashMap.TableStack var17 = var15.next;
                                 var15.next = var6;
                                 var5 = var17;
                                 var6 = var15;
                                 class="kw">continue;
                              }
                           }

                           if (var15 == null && (var7 += var10) >= var14) {
                              var7 = ++var8;
                           }
                           class="kw">continue label85;
                        }
                     }
                  }
               }

               var4 = null;
               break;
            }

            if (var11 == null) {
               break;
            }

            Object var19 = var11.val;
            if (var11.val == var1 || var19 != null && var1.equals(var19)) {
               class="kw">return true;
            }
         }
      }

      class="kw">return false;
   }

   class="kw">public V put(float var1, V var2) {
      class="kw">return this.putVal(var1, var2, false);
   }

   class="kw">protected class="kw">final V putVal(float var1, V var2, boolean var3) {
      if (var1 == this.EMPTY) {
         throw new IllegalArgumentException("Key is EMPTY: " + this.EMPTY);
      }

      if (var2 == null) {
         throw new NullPointerException();
      }

      int var4 = spread(Float.hashCode(var1));
      int var5 = 0;
      Float2ObjectConcurrentHashMap.Node[] var6 = this.table;

      while (true) {
         int var8;
         while (var6 == null || (var8 = var6.length) == 0) {
            var6 = this.initTable();
         }

         Float2ObjectConcurrentHashMap.Node var7;
         int var9;
         if ((var7 = tabAt(var6, var9 = var8 - 1 & var4)) == null) {
            if (casTabAt(var6, var9, null, new Float2ObjectConcurrentHashMap.Node<>(this.EMPTY, var4, var1, var2, null))) {
               break;
            }
         } else {
            int var10 = var7.hash;
            if (var7.hash == -1) {
               var6 = this.helpTransfer(var6, var7);
            } else {
               Object var11 = null;
               class="kw">synchronized (var7) {
                  if (tabAt(var6, var9) == var7) {
                     if (var10 < 0) {
                        if (var7 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                           var5 = 2;
                           Float2ObjectConcurrentHashMap.Node var18;
                           if ((var18 = ((Float2ObjectConcurrentHashMap.TreeBin)var7).putTreeVal(var4, var1, var2)) != null) {
                              var11 = var18.val;
                              if (!var3) {
                                 var18.val = var2;
                              }
                           }
                        }
                     } else {
                        var5 = 1;
                        Float2ObjectConcurrentHashMap.Node var13 = var7;

                        while (true) {
                           if (var13.hash == var4) {
                              float var14 = var13.key;
                              if (var13.key == var1 || var14 != this.EMPTY && var1 == var14) {
                                 var11 = var13.val;
                                 if (!var3) {
                                    var13.val = var2;
                                 }
                                 break;
                              }
                           }

                           Float2ObjectConcurrentHashMap.Node var15 = var13;
                           if ((var13 = var13.next) == null) {
                              var15.next = new Float2ObjectConcurrentHashMap.Node<>(this.EMPTY, var4, var1, var2, null);
                              break;
                           }

                           var5++;
                        }
                     }
                  }
               }

               if (var5 != 0) {
                  if (var5 >= 8) {
                     this.treeifyBin(var6, var9);
                  }

                  if (var11 != null) {
                     class="kw">return var11;
                  }
                  break;
               }
            }
         }
      }

      this.addCount(1L, var5);
      class="kw">return null;
   }

   class="kw">public void putAll(Map<? class="kw">extends Float, ? class="kw">extends V> var1) {
      this.tryPresize(var1.size());

      for (Map.Entry var3 : var1.entrySet()) {
         this.putVal(var3.getKey(), (V)var3.getValue(), false);
      }
   }

   class="kw">public void putAll(Float2ObjectConcurrentHashMap<? class="kw">extends V> var1) {
      this.tryPresize(var1.size());
      ObjectIterator var2 = var1.float2ObjectEntrySet().iterator();

      while (var2.hasNext()) {
         it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry var3 = (it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<? class="kw">extends V>)var2.next();
         this.putVal(var3.getFloatKey(), (V)var3.getValue(), false);
      }
   }

   class="kw">public void putAll(Float2ObjectMap<V> var1) {
      this.tryPresize(var1.size());
      ObjectIterator var2 = var1.float2ObjectEntrySet().iterator();

      while (var2.hasNext()) {
         it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry var3 = (it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<? class="kw">extends V>)var2.next();
         this.putVal(var3.getFloatKey(), (V)var3.getValue(), false);
      }
   }

   class="kw">public V remove(float var1) {
      class="kw">return this.replaceNode(var1, null, null);
   }

   @Deprecated
   class="kw">public V remove(Float var1) {
      class="kw">return this.replaceNode(var1, null, null);
   }

   @Deprecated
   class="kw">public V remove(Object var1) {
      class="kw">return this.remove((Float)var1);
   }

   class="kw">protected class="kw">final V replaceNode(float var1, V var2, Object var3) {
      if (var1 == this.EMPTY) {
         throw new IllegalArgumentException("Key is EMPTY: " + this.EMPTY);
      }

      int var4 = spread(Float.hashCode(var1));
      Float2ObjectConcurrentHashMap.Node[] var5 = this.table;

      Float2ObjectConcurrentHashMap.Node var6;
      int var7;
      int var8;
      while (var5 != null && (var7 = var5.length) != 0 && (var6 = tabAt(var5, var8 = var7 - 1 & var4)) != null) {
         int var9 = var6.hash;
         if (var6.hash == -1) {
            var5 = this.helpTransfer(var5, var6);
         } else {
            Object var10 = null;
            boolean var11 = false;
            class="kw">synchronized (var6) {
               if (tabAt(var5, var8) == var6) {
                  if (var9 < 0) {
                     if (var6 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var11 = true;
                        Float2ObjectConcurrentHashMap.TreeBin var19 = (Float2ObjectConcurrentHashMap.TreeBin<V>)var6;
                        Float2ObjectConcurrentHashMap.TreeNode var20 = var19.root;
                        Float2ObjectConcurrentHashMap.TreeNode var21;
                        if (var19.root != null && (var21 = var20.findTreeNode(var4, var1, null)) != null) {
                           Object var22 = var21.val;
                           if (var3 == null || var3 == var22 || var22 != null && var3.equals(var22)) {
                              var10 = var22;
                              if (var2 != null) {
                                 var21.val = var2;
                              } else if (var19.removeTreeNode(var21)) {
                                 setTabAt(var5, var8, this.untreeify(var19.first));
                              }
                           }
                        }
                     }
                  } else {
                     var11 = true;
                     Float2ObjectConcurrentHashMap.Node var13 = var6;
                     Float2ObjectConcurrentHashMap.Node var14 = null;

                     do {
                        if (var13.hash == var4) {
                           float var15 = var13.key;
                           if (var13.key == var1 || var15 != this.EMPTY && var1 == var15) {
                              Object var16 = var13.val;
                              if (var3 == null || var3 == var16 || var16 != null && var3.equals(var16)) {
                                 var10 = var16;
                                 if (var2 != null) {
                                    var13.val = var2;
                                 } else if (var14 != null) {
                                    var14.next = var13.next;
                                 } else {
                                    setTabAt(var5, var8, var13.next);
                                 }
                              }
                              break;
                           }
                        }

                        var14 = var13;
                     } while ((var13 = var13.next) != null);
                  }
               }
            }

            if (var11) {
               if (var10 != null) {
                  if (var2 == null) {
                     this.addCount(-1L, -1);
                  }

                  class="kw">return var10;
               }
               break;
            }
         }
      }

      class="kw">return null;
   }

   class="kw">public void clear() {
      long var1 = 0L;
      int var3 = 0;
      Float2ObjectConcurrentHashMap.Node[] var4 = this.table;

      while (var4 != null && var3 < var4.length) {
         Float2ObjectConcurrentHashMap.Node var6 = tabAt(var4, var3);
         if (var6 == null) {
            var3++;
         } else {
            int var5 = var6.hash;
            if (var6.hash == -1) {
               var4 = this.helpTransfer(var4, var6);
               var3 = 0;
            } else {
               class="kw">synchronized (var6) {
                  if (tabAt(var4, var3) == var6) {
                     for (Float2ObjectConcurrentHashMap.Node var8 = var5 >= 0
                           ? var6
                           : (var6 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin ? ((Float2ObjectConcurrentHashMap.TreeBin)var6).first : null);
                        var8 != null;
                        var8 = var8.next
                     ) {
                        var1--;
                     }

                     setTabAt(var4, var3++, null);
                  }
               }
            }
         }
      }

      if (var1 != 0L) {
         this.addCount(var1, -1);
      }
   }

   class="kw">public Float2ObjectConcurrentHashMap.KeySetView<V> keySet() {
      Float2ObjectConcurrentHashMap.KeySetView var1 = this.keySet;
      class="kw">return this.keySet != null ? var1 : (this.keySet = this.buildKeySetView());
   }

   class="kw">protected Float2ObjectConcurrentHashMap.KeySetView<V> buildKeySetView() {
      class="kw">return new Float2ObjectConcurrentHashMap.KeySetView<>(this, null);
   }

   class="kw">public FastCollection<V> values() {
      Float2ObjectConcurrentHashMap.ValuesView var1 = this.values;
      class="kw">return this.values != null ? var1 : (this.values = this.buildValuesView());
   }

   class="kw">protected Float2ObjectConcurrentHashMap.ValuesView<V> buildValuesView() {
      class="kw">return new Float2ObjectConcurrentHashMap.ValuesView<>(this);
   }

   class="kw">public ObjectSet<it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V>> float2ObjectEntrySet() {
      Float2ObjectConcurrentHashMap.EntrySetView var1 = this.entrySet;
      class="kw">return this.entrySet != null ? var1 : (this.entrySet = this.buildEntrySetView());
   }

   @Deprecated
   class="kw">public ObjectSet<Map.Entry<Float, V>> entrySet() {
      class="kw">return this.float2ObjectEntrySet();
   }

   class="kw">protected Float2ObjectConcurrentHashMap.EntrySetView<V> buildEntrySetView() {
      class="kw">return new Float2ObjectConcurrentHashMap.EntrySetView<>(this);
   }

   @Override
   class="kw">public int hashCode() {
      int var1 = 0;
      Float2ObjectConcurrentHashMap.Node[] var2 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var3 = var2;
         Float2ObjectConcurrentHashMap.Node var4 = null;
         Float2ObjectConcurrentHashMap.TableStack var5 = null;
         Float2ObjectConcurrentHashMap.TableStack var6 = null;
         int var7 = 0;
         int var8 = 0;
         int var9 = var2.length;
         int var10 = var2.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var11 = null;
            var11 = var4;
            if (var4 != null) {
               var11 = var11.next;
            }

            label75: {
               while (true) {
                  if (var11 != null) {
                     var4 = var11;
                     break label75;
                  }

                  if (var8 >= var9) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var12 = var3;
                  if (var3 == null) {
                     break;
                  }

                  int var14;
                  int var10000 = var14 = var12.length;
                  int var13 = var7;
                  if (var10000 <= var7 || var13 < 0) {
                     break;
                  }

                  if ((var11 = tabAt(var12, var13)) != null && var11.hash < 0) {
                     if (var11 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var3 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var11).nextTable;
                        var11 = null;
                        Float2ObjectConcurrentHashMap.TableStack var19 = var6;
                        if (var19 != null) {
                           var6 = var19.next;
                        } else {
                           var19 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var19.tab = var12;
                        var19.length = var14;
                        var19.index = var13;
                        var19.next = var5;
                        var5 = var19;
                        class="kw">continue;
                     }

                     if (var11 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var11 = ((Float2ObjectConcurrentHashMap.TreeBin)var11).first;
                     } else {
                        var11 = null;
                     }
                  }

                  if (var5 == null) {
                     if ((var7 = var13 + var10) >= var14) {
                        var7 = ++var8;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var15 = var5;
                        if (var5 != null) {
                           int var16 = var15.length;
                           if ((var7 += var15.length) >= var14) {
                              var14 = var16;
                              var7 = var15.index;
                              var3 = var15.tab;
                              var15.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var17 = var15.next;
                              var15.next = var6;
                              var5 = var17;
                              var6 = var15;
                              class="kw">continue;
                           }
                        }

                        if (var15 == null && (var7 += var10) >= var14) {
                           var7 = ++var8;
                        }
                        break;
                     }
                  }
               }

               var4 = null;
            }

            if (var11 == null) {
               break;
            }

            var1 += Float.hashCode(var11.key) ^ var11.val.hashCode();
         }
      }

      class="kw">return var1;
   }

   @Override
   class="kw">public String toString() {
      Float2ObjectConcurrentHashMap.Node[] var1 = this.table;
      int var2 = this.table == null ? 0 : var1.length;
      Float2ObjectConcurrentHashMap.Traverser var3 = new Float2ObjectConcurrentHashMap.Traverser<>(var1, var2, 0, var2);
      StringBuilder var4 = new StringBuilder();
      var4.append('{');
      Float2ObjectConcurrentHashMap.Node var5;
      if ((var5 = var3.advance()) != null) {
         while (true) {
            float var6 = var5.key;
            Object var7 = var5.val;
            var4.append(var6);
            var4.append('=');
            var4.append(var7 == this ? "(this Map)" : var7);
            if ((var5 = var3.advance()) == null) {
               break;
            }

            var4.append(',').append(' ');
         }
      }

      class="kw">return var4.append('}').toString();
   }

   @Override
   class="kw">public boolean equals(Object var1) {
      if (var1 != this) {
         if (!(var1 class="kw">instanceof Float2ObjectConcurrentHashMap var2)) {
            class="kw">return false;
         }

         Float2ObjectConcurrentHashMap.Node[] var3 = this.table;
         int var4 = this.table == null ? 0 : var3.length;
         Float2ObjectConcurrentHashMap.Traverser var5 = new Float2ObjectConcurrentHashMap.Traverser<>(var3, var4, 0, var4);

         Float2ObjectConcurrentHashMap.Node var6;
         while ((var6 = var5.advance()) != null) {
            Object var7 = var6.val;
            Object var8 = var2.get(var6.key);
            if (var8 == null || var8 != var7 && !var8.equals(var7)) {
               class="kw">return false;
            }
         }

         ObjectIterator var11 = var2.float2ObjectEntrySet().iterator();

         while (var11.hasNext()) {
            it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry var12 = (it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<?>)var11.next();
            Object var9;
            Object var10;
            float var13;
            if ((var13 = var12.getFloatKey()) == var2.EMPTY
               || (var9 = var12.getValue()) == null
               || (var10 = this.get(var13)) == null
               || var9 != var10 && !var9.equals(var10)) {
               class="kw">return false;
            }
         }
      }

      class="kw">return true;
   }

   class="kw">public V putIfAbsent(float var1, V var2) {
      class="kw">return this.putVal(var1, var2, true);
   }

   class="kw">public boolean remove(float var1, Object var2) {
      if (var1 == this.EMPTY) {
         throw new IllegalArgumentException("Key is EMPTY: " + this.EMPTY);
      } else {
         class="kw">return var2 != null && this.replaceNode(var1, null, var2) != null;
      }
   }

   class="kw">public boolean replace(float var1, V var2, V var3) {
      if (var1 == this.EMPTY) {
         throw new IllegalArgumentException("Key is EMPTY: " + this.EMPTY);
      } else if (var2 != null && var3 != null) {
         class="kw">return this.replaceNode(var1, var3, var2) != null;
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public V replace(float var1, V var2) {
      if (var1 == this.EMPTY) {
         throw new IllegalArgumentException("Key is EMPTY: " + this.EMPTY);
      } else if (var2 == null) {
         throw new NullPointerException();
      } else {
         class="kw">return this.replaceNode(var1, var2, null);
      }
   }

   class="kw">public V getOrDefault(float var1, V var2) {
      Object var3;
      class="kw">return (var3 = this.get(var1)) == null ? var2 : var3;
   }

   class="kw">public int forEach(Float2ObjectConcurrentHashMap.FloatObjConsumer<? super V> var1) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var2 = 0;
      Float2ObjectConcurrentHashMap.Node[] var3 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var4 = var3;
         Float2ObjectConcurrentHashMap.Node var5 = null;
         Float2ObjectConcurrentHashMap.TableStack var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         int var8 = 0;
         int var9 = 0;
         int var10 = var3.length;
         int var11 = var3.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var12 = null;
            var12 = var5;
            if (var5 != null) {
               var12 = var12.next;
            }

            label78: {
               while (true) {
                  if (var12 != null) {
                     var5 = var12;
                     break label78;
                  }

                  if (var9 >= var10) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var13 = var4;
                  if (var4 == null) {
                     break;
                  }

                  int var15;
                  int var10000 = var15 = var13.length;
                  int var14 = var8;
                  if (var10000 <= var8 || var14 < 0) {
                     break;
                  }

                  if ((var12 = tabAt(var13, var14)) != null && var12.hash < 0) {
                     if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var4 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var12).nextTable;
                        var12 = null;
                        Float2ObjectConcurrentHashMap.TableStack var20 = var7;
                        if (var20 != null) {
                           var7 = var20.next;
                        } else {
                           var20 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var20.tab = var13;
                        var20.length = var15;
                        var20.index = var14;
                        var20.next = var6;
                        var6 = var20;
                        class="kw">continue;
                     }

                     if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var12 = ((Float2ObjectConcurrentHashMap.TreeBin)var12).first;
                     } else {
                        var12 = null;
                     }
                  }

                  if (var6 == null) {
                     if ((var8 = var14 + var11) >= var15) {
                        var8 = ++var9;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var16 = var6;
                        if (var6 != null) {
                           int var17 = var16.length;
                           if ((var8 += var16.length) >= var15) {
                              var15 = var17;
                              var8 = var16.index;
                              var4 = var16.tab;
                              var16.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var18 = var16.next;
                              var16.next = var7;
                              var6 = var18;
                              var7 = var16;
                              class="kw">continue;
                           }
                        }

                        if (var16 == null && (var8 += var11) >= var15) {
                           var8 = ++var9;
                        }
                        break;
                     }
                  }
               }

               var5 = null;
            }

            if (var12 == null) {
               break;
            }

            var1.accept(var12.key, var12.val);
            var2++;
         }
      }

      class="kw">return var2;
   }

   class="kw">public <X> int forEach(Float2ObjectConcurrentHashMap.FloatBiObjConsumer<? super V, X> var1, X var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var3 = 0;
      Float2ObjectConcurrentHashMap.Node[] var4 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var5 = var4;
         Float2ObjectConcurrentHashMap.Node var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         int var9 = 0;
         int var10 = 0;
         int var11 = var4.length;
         int var12 = var4.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var13 = null;
            var13 = var6;
            if (var6 != null) {
               var13 = var13.next;
            }

            label78: {
               while (true) {
                  if (var13 != null) {
                     var6 = var13;
                     break label78;
                  }

                  if (var10 >= var11) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var14 = var5;
                  if (var5 == null) {
                     break;
                  }

                  int var16;
                  int var10000 = var16 = var14.length;
                  int var15 = var9;
                  if (var10000 <= var9 || var15 < 0) {
                     break;
                  }

                  if ((var13 = tabAt(var14, var15)) != null && var13.hash < 0) {
                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var5 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var13).nextTable;
                        var13 = null;
                        Float2ObjectConcurrentHashMap.TableStack var21 = var8;
                        if (var21 != null) {
                           var8 = var21.next;
                        } else {
                           var21 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var21.tab = var14;
                        var21.length = var16;
                        var21.index = var15;
                        var21.next = var7;
                        var7 = var21;
                        class="kw">continue;
                     }

                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var13 = ((Float2ObjectConcurrentHashMap.TreeBin)var13).first;
                     } else {
                        var13 = null;
                     }
                  }

                  if (var7 == null) {
                     if ((var9 = var15 + var12) >= var16) {
                        var9 = ++var10;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var17 = var7;
                        if (var7 != null) {
                           int var18 = var17.length;
                           if ((var9 += var17.length) >= var16) {
                              var16 = var18;
                              var9 = var17.index;
                              var5 = var17.tab;
                              var17.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var19 = var17.next;
                              var17.next = var8;
                              var7 = var19;
                              var8 = var17;
                              class="kw">continue;
                           }
                        }

                        if (var17 == null && (var9 += var12) >= var16) {
                           var9 = ++var10;
                        }
                        break;
                     }
                  }
               }

               var6 = null;
            }

            if (var13 == null) {
               break;
            }

            var1.accept(var13.key, var13.val, var2);
            var3++;
         }
      }

      class="kw">return var3;
   }

   class="kw">public <X, Y> int forEach(Float2ObjectConcurrentHashMap.FloatTriObjConsumer<? super V, X, Y> var1, X var2, Y var3) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var4 = 0;
      Float2ObjectConcurrentHashMap.Node[] var5 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var6 = var5;
         Float2ObjectConcurrentHashMap.Node var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         Float2ObjectConcurrentHashMap.TableStack var9 = null;
         int var10 = 0;
         int var11 = 0;
         int var12 = var5.length;
         int var13 = var5.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var14 = null;
            var14 = var7;
            if (var7 != null) {
               var14 = var14.next;
            }

            label78: {
               while (true) {
                  if (var14 != null) {
                     var7 = var14;
                     break label78;
                  }

                  if (var11 >= var12) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var15 = var6;
                  if (var6 == null) {
                     break;
                  }

                  int var17;
                  int var10000 = var17 = var15.length;
                  int var16 = var10;
                  if (var10000 <= var10 || var16 < 0) {
                     break;
                  }

                  if ((var14 = tabAt(var15, var16)) != null && var14.hash < 0) {
                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var6 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var14).nextTable;
                        var14 = null;
                        Float2ObjectConcurrentHashMap.TableStack var22 = var9;
                        if (var22 != null) {
                           var9 = var22.next;
                        } else {
                           var22 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var22.tab = var15;
                        var22.length = var17;
                        var22.index = var16;
                        var22.next = var8;
                        var8 = var22;
                        class="kw">continue;
                     }

                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var14 = ((Float2ObjectConcurrentHashMap.TreeBin)var14).first;
                     } else {
                        var14 = null;
                     }
                  }

                  if (var8 == null) {
                     if ((var10 = var16 + var13) >= var17) {
                        var10 = ++var11;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var18 = var8;
                        if (var8 != null) {
                           int var19 = var18.length;
                           if ((var10 += var18.length) >= var17) {
                              var17 = var19;
                              var10 = var18.index;
                              var6 = var18.tab;
                              var18.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var20 = var18.next;
                              var18.next = var9;
                              var8 = var20;
                              var9 = var18;
                              class="kw">continue;
                           }
                        }

                        if (var18 == null && (var10 += var13) >= var17) {
                           var10 = ++var11;
                        }
                        break;
                     }
                  }
               }

               var7 = null;
            }

            if (var14 == null) {
               break;
            }

            var1.accept(var14.key, var14.val, var2, var3);
            var4++;
         }
      }

      class="kw">return var4;
   }

   class="kw">public int forEachWithByte(Float2ObjectConcurrentHashMap.FloatObjByteConsumer<? super V> var1, byte var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var3 = 0;
      Float2ObjectConcurrentHashMap.Node[] var4 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var5 = var4;
         Float2ObjectConcurrentHashMap.Node var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         int var9 = 0;
         int var10 = 0;
         int var11 = var4.length;
         int var12 = var4.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var13 = null;
            var13 = var6;
            if (var6 != null) {
               var13 = var13.next;
            }

            label78: {
               while (true) {
                  if (var13 != null) {
                     var6 = var13;
                     break label78;
                  }

                  if (var10 >= var11) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var14 = var5;
                  if (var5 == null) {
                     break;
                  }

                  int var16;
                  int var10000 = var16 = var14.length;
                  int var15 = var9;
                  if (var10000 <= var9 || var15 < 0) {
                     break;
                  }

                  if ((var13 = tabAt(var14, var15)) != null && var13.hash < 0) {
                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var5 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var13).nextTable;
                        var13 = null;
                        Float2ObjectConcurrentHashMap.TableStack var21 = var8;
                        if (var21 != null) {
                           var8 = var21.next;
                        } else {
                           var21 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var21.tab = var14;
                        var21.length = var16;
                        var21.index = var15;
                        var21.next = var7;
                        var7 = var21;
                        class="kw">continue;
                     }

                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var13 = ((Float2ObjectConcurrentHashMap.TreeBin)var13).first;
                     } else {
                        var13 = null;
                     }
                  }

                  if (var7 == null) {
                     if ((var9 = var15 + var12) >= var16) {
                        var9 = ++var10;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var17 = var7;
                        if (var7 != null) {
                           int var18 = var17.length;
                           if ((var9 += var17.length) >= var16) {
                              var16 = var18;
                              var9 = var17.index;
                              var5 = var17.tab;
                              var17.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var19 = var17.next;
                              var17.next = var8;
                              var7 = var19;
                              var8 = var17;
                              class="kw">continue;
                           }
                        }

                        if (var17 == null && (var9 += var12) >= var16) {
                           var9 = ++var10;
                        }
                        break;
                     }
                  }
               }

               var6 = null;
            }

            if (var13 == null) {
               break;
            }

            var1.accept(var13.key, var13.val, var2);
            var3++;
         }
      }

      class="kw">return var3;
   }

   class="kw">public int forEachWithShort(Float2ObjectConcurrentHashMap.FloatObjShortConsumer<? super V> var1, short var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var3 = 0;
      Float2ObjectConcurrentHashMap.Node[] var4 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var5 = var4;
         Float2ObjectConcurrentHashMap.Node var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         int var9 = 0;
         int var10 = 0;
         int var11 = var4.length;
         int var12 = var4.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var13 = null;
            var13 = var6;
            if (var6 != null) {
               var13 = var13.next;
            }

            label78: {
               while (true) {
                  if (var13 != null) {
                     var6 = var13;
                     break label78;
                  }

                  if (var10 >= var11) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var14 = var5;
                  if (var5 == null) {
                     break;
                  }

                  int var16;
                  int var10000 = var16 = var14.length;
                  int var15 = var9;
                  if (var10000 <= var9 || var15 < 0) {
                     break;
                  }

                  if ((var13 = tabAt(var14, var15)) != null && var13.hash < 0) {
                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var5 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var13).nextTable;
                        var13 = null;
                        Float2ObjectConcurrentHashMap.TableStack var21 = var8;
                        if (var21 != null) {
                           var8 = var21.next;
                        } else {
                           var21 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var21.tab = var14;
                        var21.length = var16;
                        var21.index = var15;
                        var21.next = var7;
                        var7 = var21;
                        class="kw">continue;
                     }

                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var13 = ((Float2ObjectConcurrentHashMap.TreeBin)var13).first;
                     } else {
                        var13 = null;
                     }
                  }

                  if (var7 == null) {
                     if ((var9 = var15 + var12) >= var16) {
                        var9 = ++var10;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var17 = var7;
                        if (var7 != null) {
                           int var18 = var17.length;
                           if ((var9 += var17.length) >= var16) {
                              var16 = var18;
                              var9 = var17.index;
                              var5 = var17.tab;
                              var17.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var19 = var17.next;
                              var17.next = var8;
                              var7 = var19;
                              var8 = var17;
                              class="kw">continue;
                           }
                        }

                        if (var17 == null && (var9 += var12) >= var16) {
                           var9 = ++var10;
                        }
                        break;
                     }
                  }
               }

               var6 = null;
            }

            if (var13 == null) {
               break;
            }

            var1.accept(var13.key, var13.val, var2);
            var3++;
         }
      }

      class="kw">return var3;
   }

   class="kw">public int forEachWithInt(Float2ObjectConcurrentHashMap.FloatObjIntConsumer<? super V> var1, int var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var3 = 0;
      Float2ObjectConcurrentHashMap.Node[] var4 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var5 = var4;
         Float2ObjectConcurrentHashMap.Node var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         int var9 = 0;
         int var10 = 0;
         int var11 = var4.length;
         int var12 = var4.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var13 = null;
            var13 = var6;
            if (var6 != null) {
               var13 = var13.next;
            }

            label78: {
               while (true) {
                  if (var13 != null) {
                     var6 = var13;
                     break label78;
                  }

                  if (var10 >= var11) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var14 = var5;
                  if (var5 == null) {
                     break;
                  }

                  int var16;
                  int var10000 = var16 = var14.length;
                  int var15 = var9;
                  if (var10000 <= var9 || var15 < 0) {
                     break;
                  }

                  if ((var13 = tabAt(var14, var15)) != null && var13.hash < 0) {
                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var5 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var13).nextTable;
                        var13 = null;
                        Float2ObjectConcurrentHashMap.TableStack var21 = var8;
                        if (var21 != null) {
                           var8 = var21.next;
                        } else {
                           var21 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var21.tab = var14;
                        var21.length = var16;
                        var21.index = var15;
                        var21.next = var7;
                        var7 = var21;
                        class="kw">continue;
                     }

                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var13 = ((Float2ObjectConcurrentHashMap.TreeBin)var13).first;
                     } else {
                        var13 = null;
                     }
                  }

                  if (var7 == null) {
                     if ((var9 = var15 + var12) >= var16) {
                        var9 = ++var10;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var17 = var7;
                        if (var7 != null) {
                           int var18 = var17.length;
                           if ((var9 += var17.length) >= var16) {
                              var16 = var18;
                              var9 = var17.index;
                              var5 = var17.tab;
                              var17.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var19 = var17.next;
                              var17.next = var8;
                              var7 = var19;
                              var8 = var17;
                              class="kw">continue;
                           }
                        }

                        if (var17 == null && (var9 += var12) >= var16) {
                           var9 = ++var10;
                        }
                        break;
                     }
                  }
               }

               var6 = null;
            }

            if (var13 == null) {
               break;
            }

            var1.accept(var13.key, var13.val, var2);
            var3++;
         }
      }

      class="kw">return var3;
   }

   class="kw">public int forEachWithLong(Float2ObjectConcurrentHashMap.FloatObjLongConsumer<? super V> var1, long var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var4 = 0;
      Float2ObjectConcurrentHashMap.Node[] var5 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var6 = var5;
         Float2ObjectConcurrentHashMap.Node var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         Float2ObjectConcurrentHashMap.TableStack var9 = null;
         int var10 = 0;
         int var11 = 0;
         int var12 = var5.length;
         int var13 = var5.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var14 = null;
            var14 = var7;
            if (var7 != null) {
               var14 = var14.next;
            }

            label78: {
               while (true) {
                  if (var14 != null) {
                     var7 = var14;
                     break label78;
                  }

                  if (var11 >= var12) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var15 = var6;
                  if (var6 == null) {
                     break;
                  }

                  int var17;
                  int var10000 = var17 = var15.length;
                  int var16 = var10;
                  if (var10000 <= var10 || var16 < 0) {
                     break;
                  }

                  if ((var14 = tabAt(var15, var16)) != null && var14.hash < 0) {
                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var6 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var14).nextTable;
                        var14 = null;
                        Float2ObjectConcurrentHashMap.TableStack var22 = var9;
                        if (var22 != null) {
                           var9 = var22.next;
                        } else {
                           var22 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var22.tab = var15;
                        var22.length = var17;
                        var22.index = var16;
                        var22.next = var8;
                        var8 = var22;
                        class="kw">continue;
                     }

                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var14 = ((Float2ObjectConcurrentHashMap.TreeBin)var14).first;
                     } else {
                        var14 = null;
                     }
                  }

                  if (var8 == null) {
                     if ((var10 = var16 + var13) >= var17) {
                        var10 = ++var11;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var18 = var8;
                        if (var8 != null) {
                           int var19 = var18.length;
                           if ((var10 += var18.length) >= var17) {
                              var17 = var19;
                              var10 = var18.index;
                              var6 = var18.tab;
                              var18.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var20 = var18.next;
                              var18.next = var9;
                              var8 = var20;
                              var9 = var18;
                              class="kw">continue;
                           }
                        }

                        if (var18 == null && (var10 += var13) >= var17) {
                           var10 = ++var11;
                        }
                        break;
                     }
                  }
               }

               var7 = null;
            }

            if (var14 == null) {
               break;
            }

            var1.accept(var14.key, var14.val, var2);
            var4++;
         }
      }

      class="kw">return var4;
   }

   class="kw">public int forEachWithFloat(Float2ObjectConcurrentHashMap.FloatObjFloatConsumer<? super V> var1, float var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var3 = 0;
      Float2ObjectConcurrentHashMap.Node[] var4 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var5 = var4;
         Float2ObjectConcurrentHashMap.Node var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         int var9 = 0;
         int var10 = 0;
         int var11 = var4.length;
         int var12 = var4.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var13 = null;
            var13 = var6;
            if (var6 != null) {
               var13 = var13.next;
            }

            label78: {
               while (true) {
                  if (var13 != null) {
                     var6 = var13;
                     break label78;
                  }

                  if (var10 >= var11) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var14 = var5;
                  if (var5 == null) {
                     break;
                  }

                  int var16;
                  int var10000 = var16 = var14.length;
                  int var15 = var9;
                  if (var10000 <= var9 || var15 < 0) {
                     break;
                  }

                  if ((var13 = tabAt(var14, var15)) != null && var13.hash < 0) {
                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var5 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var13).nextTable;
                        var13 = null;
                        Float2ObjectConcurrentHashMap.TableStack var21 = var8;
                        if (var21 != null) {
                           var8 = var21.next;
                        } else {
                           var21 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var21.tab = var14;
                        var21.length = var16;
                        var21.index = var15;
                        var21.next = var7;
                        var7 = var21;
                        class="kw">continue;
                     }

                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var13 = ((Float2ObjectConcurrentHashMap.TreeBin)var13).first;
                     } else {
                        var13 = null;
                     }
                  }

                  if (var7 == null) {
                     if ((var9 = var15 + var12) >= var16) {
                        var9 = ++var10;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var17 = var7;
                        if (var7 != null) {
                           int var18 = var17.length;
                           if ((var9 += var17.length) >= var16) {
                              var16 = var18;
                              var9 = var17.index;
                              var5 = var17.tab;
                              var17.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var19 = var17.next;
                              var17.next = var8;
                              var7 = var19;
                              var8 = var17;
                              class="kw">continue;
                           }
                        }

                        if (var17 == null && (var9 += var12) >= var16) {
                           var9 = ++var10;
                        }
                        break;
                     }
                  }
               }

               var6 = null;
            }

            if (var13 == null) {
               break;
            }

            var1.accept(var13.key, var13.val, var2);
            var3++;
         }
      }

      class="kw">return var3;
   }

   class="kw">public int forEachWithDouble(Float2ObjectConcurrentHashMap.FloatObjDoubleConsumer<? super V> var1, double var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var4 = 0;
      Float2ObjectConcurrentHashMap.Node[] var5 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var6 = var5;
         Float2ObjectConcurrentHashMap.Node var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         Float2ObjectConcurrentHashMap.TableStack var9 = null;
         int var10 = 0;
         int var11 = 0;
         int var12 = var5.length;
         int var13 = var5.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var14 = null;
            var14 = var7;
            if (var7 != null) {
               var14 = var14.next;
            }

            label78: {
               while (true) {
                  if (var14 != null) {
                     var7 = var14;
                     break label78;
                  }

                  if (var11 >= var12) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var15 = var6;
                  if (var6 == null) {
                     break;
                  }

                  int var17;
                  int var10000 = var17 = var15.length;
                  int var16 = var10;
                  if (var10000 <= var10 || var16 < 0) {
                     break;
                  }

                  if ((var14 = tabAt(var15, var16)) != null && var14.hash < 0) {
                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var6 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var14).nextTable;
                        var14 = null;
                        Float2ObjectConcurrentHashMap.TableStack var22 = var9;
                        if (var22 != null) {
                           var9 = var22.next;
                        } else {
                           var22 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var22.tab = var15;
                        var22.length = var17;
                        var22.index = var16;
                        var22.next = var8;
                        var8 = var22;
                        class="kw">continue;
                     }

                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var14 = ((Float2ObjectConcurrentHashMap.TreeBin)var14).first;
                     } else {
                        var14 = null;
                     }
                  }

                  if (var8 == null) {
                     if ((var10 = var16 + var13) >= var17) {
                        var10 = ++var11;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var18 = var8;
                        if (var8 != null) {
                           int var19 = var18.length;
                           if ((var10 += var18.length) >= var17) {
                              var17 = var19;
                              var10 = var18.index;
                              var6 = var18.tab;
                              var18.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var20 = var18.next;
                              var18.next = var9;
                              var8 = var20;
                              var9 = var18;
                              class="kw">continue;
                           }
                        }

                        if (var18 == null && (var10 += var13) >= var17) {
                           var10 = ++var11;
                        }
                        break;
                     }
                  }
               }

               var7 = null;
            }

            if (var14 == null) {
               break;
            }

            var1.accept(var14.key, var14.val, var2);
            var4++;
         }
      }

      class="kw">return var4;
   }

   class="kw">public <X> int forEachWithByte(Float2ObjectConcurrentHashMap.FloatBiObjByteConsumer<? super V, X> var1, byte var2, X var3) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var4 = 0;
      Float2ObjectConcurrentHashMap.Node[] var5 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var6 = var5;
         Float2ObjectConcurrentHashMap.Node var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         Float2ObjectConcurrentHashMap.TableStack var9 = null;
         int var10 = 0;
         int var11 = 0;
         int var12 = var5.length;
         int var13 = var5.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var14 = null;
            var14 = var7;
            if (var7 != null) {
               var14 = var14.next;
            }

            label78: {
               while (true) {
                  if (var14 != null) {
                     var7 = var14;
                     break label78;
                  }

                  if (var11 >= var12) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var15 = var6;
                  if (var6 == null) {
                     break;
                  }

                  int var17;
                  int var10000 = var17 = var15.length;
                  int var16 = var10;
                  if (var10000 <= var10 || var16 < 0) {
                     break;
                  }

                  if ((var14 = tabAt(var15, var16)) != null && var14.hash < 0) {
                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var6 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var14).nextTable;
                        var14 = null;
                        Float2ObjectConcurrentHashMap.TableStack var22 = var9;
                        if (var22 != null) {
                           var9 = var22.next;
                        } else {
                           var22 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var22.tab = var15;
                        var22.length = var17;
                        var22.index = var16;
                        var22.next = var8;
                        var8 = var22;
                        class="kw">continue;
                     }

                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var14 = ((Float2ObjectConcurrentHashMap.TreeBin)var14).first;
                     } else {
                        var14 = null;
                     }
                  }

                  if (var8 == null) {
                     if ((var10 = var16 + var13) >= var17) {
                        var10 = ++var11;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var18 = var8;
                        if (var8 != null) {
                           int var19 = var18.length;
                           if ((var10 += var18.length) >= var17) {
                              var17 = var19;
                              var10 = var18.index;
                              var6 = var18.tab;
                              var18.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var20 = var18.next;
                              var18.next = var9;
                              var8 = var20;
                              var9 = var18;
                              class="kw">continue;
                           }
                        }

                        if (var18 == null && (var10 += var13) >= var17) {
                           var10 = ++var11;
                        }
                        break;
                     }
                  }
               }

               var7 = null;
            }

            if (var14 == null) {
               break;
            }

            var1.accept(var14.key, var14.val, var2, var3);
            var4++;
         }
      }

      class="kw">return var4;
   }

   class="kw">public <X> int forEachWithShort(Float2ObjectConcurrentHashMap.FloatBiObjShortConsumer<? super V, X> var1, short var2, X var3) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var4 = 0;
      Float2ObjectConcurrentHashMap.Node[] var5 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var6 = var5;
         Float2ObjectConcurrentHashMap.Node var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         Float2ObjectConcurrentHashMap.TableStack var9 = null;
         int var10 = 0;
         int var11 = 0;
         int var12 = var5.length;
         int var13 = var5.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var14 = null;
            var14 = var7;
            if (var7 != null) {
               var14 = var14.next;
            }

            label78: {
               while (true) {
                  if (var14 != null) {
                     var7 = var14;
                     break label78;
                  }

                  if (var11 >= var12) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var15 = var6;
                  if (var6 == null) {
                     break;
                  }

                  int var17;
                  int var10000 = var17 = var15.length;
                  int var16 = var10;
                  if (var10000 <= var10 || var16 < 0) {
                     break;
                  }

                  if ((var14 = tabAt(var15, var16)) != null && var14.hash < 0) {
                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var6 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var14).nextTable;
                        var14 = null;
                        Float2ObjectConcurrentHashMap.TableStack var22 = var9;
                        if (var22 != null) {
                           var9 = var22.next;
                        } else {
                           var22 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var22.tab = var15;
                        var22.length = var17;
                        var22.index = var16;
                        var22.next = var8;
                        var8 = var22;
                        class="kw">continue;
                     }

                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var14 = ((Float2ObjectConcurrentHashMap.TreeBin)var14).first;
                     } else {
                        var14 = null;
                     }
                  }

                  if (var8 == null) {
                     if ((var10 = var16 + var13) >= var17) {
                        var10 = ++var11;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var18 = var8;
                        if (var8 != null) {
                           int var19 = var18.length;
                           if ((var10 += var18.length) >= var17) {
                              var17 = var19;
                              var10 = var18.index;
                              var6 = var18.tab;
                              var18.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var20 = var18.next;
                              var18.next = var9;
                              var8 = var20;
                              var9 = var18;
                              class="kw">continue;
                           }
                        }

                        if (var18 == null && (var10 += var13) >= var17) {
                           var10 = ++var11;
                        }
                        break;
                     }
                  }
               }

               var7 = null;
            }

            if (var14 == null) {
               break;
            }

            var1.accept(var14.key, var14.val, var2, var3);
            var4++;
         }
      }

      class="kw">return var4;
   }

   class="kw">public <X> int forEachWithInt(Float2ObjectConcurrentHashMap.FloatBiObjIntConsumer<? super V, X> var1, int var2, X var3) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var4 = 0;
      Float2ObjectConcurrentHashMap.Node[] var5 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var6 = var5;
         Float2ObjectConcurrentHashMap.Node var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         Float2ObjectConcurrentHashMap.TableStack var9 = null;
         int var10 = 0;
         int var11 = 0;
         int var12 = var5.length;
         int var13 = var5.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var14 = null;
            var14 = var7;
            if (var7 != null) {
               var14 = var14.next;
            }

            label78: {
               while (true) {
                  if (var14 != null) {
                     var7 = var14;
                     break label78;
                  }

                  if (var11 >= var12) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var15 = var6;
                  if (var6 == null) {
                     break;
                  }

                  int var17;
                  int var10000 = var17 = var15.length;
                  int var16 = var10;
                  if (var10000 <= var10 || var16 < 0) {
                     break;
                  }

                  if ((var14 = tabAt(var15, var16)) != null && var14.hash < 0) {
                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var6 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var14).nextTable;
                        var14 = null;
                        Float2ObjectConcurrentHashMap.TableStack var22 = var9;
                        if (var22 != null) {
                           var9 = var22.next;
                        } else {
                           var22 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var22.tab = var15;
                        var22.length = var17;
                        var22.index = var16;
                        var22.next = var8;
                        var8 = var22;
                        class="kw">continue;
                     }

                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var14 = ((Float2ObjectConcurrentHashMap.TreeBin)var14).first;
                     } else {
                        var14 = null;
                     }
                  }

                  if (var8 == null) {
                     if ((var10 = var16 + var13) >= var17) {
                        var10 = ++var11;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var18 = var8;
                        if (var8 != null) {
                           int var19 = var18.length;
                           if ((var10 += var18.length) >= var17) {
                              var17 = var19;
                              var10 = var18.index;
                              var6 = var18.tab;
                              var18.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var20 = var18.next;
                              var18.next = var9;
                              var8 = var20;
                              var9 = var18;
                              class="kw">continue;
                           }
                        }

                        if (var18 == null && (var10 += var13) >= var17) {
                           var10 = ++var11;
                        }
                        break;
                     }
                  }
               }

               var7 = null;
            }

            if (var14 == null) {
               break;
            }

            var1.accept(var14.key, var14.val, var2, var3);
            var4++;
         }
      }

      class="kw">return var4;
   }

   class="kw">public <X> int forEachWithLong(Float2ObjectConcurrentHashMap.FloatBiObjLongConsumer<? super V, X> var1, long var2, X var4) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var5 = 0;
      Float2ObjectConcurrentHashMap.Node[] var6 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var7 = var6;
         Float2ObjectConcurrentHashMap.Node var8 = null;
         Float2ObjectConcurrentHashMap.TableStack var9 = null;
         Float2ObjectConcurrentHashMap.TableStack var10 = null;
         int var11 = 0;
         int var12 = 0;
         int var13 = var6.length;
         int var14 = var6.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var15 = null;
            var15 = var8;
            if (var8 != null) {
               var15 = var15.next;
            }

            label78: {
               while (true) {
                  if (var15 != null) {
                     var8 = var15;
                     break label78;
                  }

                  if (var12 >= var13) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var16 = var7;
                  if (var7 == null) {
                     break;
                  }

                  int var18;
                  int var10000 = var18 = var16.length;
                  int var17 = var11;
                  if (var10000 <= var11 || var17 < 0) {
                     break;
                  }

                  if ((var15 = tabAt(var16, var17)) != null && var15.hash < 0) {
                     if (var15 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var7 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var15).nextTable;
                        var15 = null;
                        Float2ObjectConcurrentHashMap.TableStack var23 = var10;
                        if (var23 != null) {
                           var10 = var23.next;
                        } else {
                           var23 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var23.tab = var16;
                        var23.length = var18;
                        var23.index = var17;
                        var23.next = var9;
                        var9 = var23;
                        class="kw">continue;
                     }

                     if (var15 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var15 = ((Float2ObjectConcurrentHashMap.TreeBin)var15).first;
                     } else {
                        var15 = null;
                     }
                  }

                  if (var9 == null) {
                     if ((var11 = var17 + var14) >= var18) {
                        var11 = ++var12;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var19 = var9;
                        if (var9 != null) {
                           int var20 = var19.length;
                           if ((var11 += var19.length) >= var18) {
                              var18 = var20;
                              var11 = var19.index;
                              var7 = var19.tab;
                              var19.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var21 = var19.next;
                              var19.next = var10;
                              var9 = var21;
                              var10 = var19;
                              class="kw">continue;
                           }
                        }

                        if (var19 == null && (var11 += var14) >= var18) {
                           var11 = ++var12;
                        }
                        break;
                     }
                  }
               }

               var8 = null;
            }

            if (var15 == null) {
               break;
            }

            var1.accept(var15.key, var15.val, var2, var4);
            var5++;
         }
      }

      class="kw">return var5;
   }

   class="kw">public <X> int forEachWithFloat(Float2ObjectConcurrentHashMap.FloatBiObjFloatConsumer<? super V, X> var1, float var2, X var3) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var4 = 0;
      Float2ObjectConcurrentHashMap.Node[] var5 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var6 = var5;
         Float2ObjectConcurrentHashMap.Node var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         Float2ObjectConcurrentHashMap.TableStack var9 = null;
         int var10 = 0;
         int var11 = 0;
         int var12 = var5.length;
         int var13 = var5.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var14 = null;
            var14 = var7;
            if (var7 != null) {
               var14 = var14.next;
            }

            label78: {
               while (true) {
                  if (var14 != null) {
                     var7 = var14;
                     break label78;
                  }

                  if (var11 >= var12) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var15 = var6;
                  if (var6 == null) {
                     break;
                  }

                  int var17;
                  int var10000 = var17 = var15.length;
                  int var16 = var10;
                  if (var10000 <= var10 || var16 < 0) {
                     break;
                  }

                  if ((var14 = tabAt(var15, var16)) != null && var14.hash < 0) {
                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var6 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var14).nextTable;
                        var14 = null;
                        Float2ObjectConcurrentHashMap.TableStack var22 = var9;
                        if (var22 != null) {
                           var9 = var22.next;
                        } else {
                           var22 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var22.tab = var15;
                        var22.length = var17;
                        var22.index = var16;
                        var22.next = var8;
                        var8 = var22;
                        class="kw">continue;
                     }

                     if (var14 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var14 = ((Float2ObjectConcurrentHashMap.TreeBin)var14).first;
                     } else {
                        var14 = null;
                     }
                  }

                  if (var8 == null) {
                     if ((var10 = var16 + var13) >= var17) {
                        var10 = ++var11;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var18 = var8;
                        if (var8 != null) {
                           int var19 = var18.length;
                           if ((var10 += var18.length) >= var17) {
                              var17 = var19;
                              var10 = var18.index;
                              var6 = var18.tab;
                              var18.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var20 = var18.next;
                              var18.next = var9;
                              var8 = var20;
                              var9 = var18;
                              class="kw">continue;
                           }
                        }

                        if (var18 == null && (var10 += var13) >= var17) {
                           var10 = ++var11;
                        }
                        break;
                     }
                  }
               }

               var7 = null;
            }

            if (var14 == null) {
               break;
            }

            var1.accept(var14.key, var14.val, var2, var3);
            var4++;
         }
      }

      class="kw">return var4;
   }

   class="kw">public <X> int forEachWithDouble(Float2ObjectConcurrentHashMap.FloatBiObjDoubleConsumer<? super V, X> var1, double var2, X var4) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      int var5 = 0;
      Float2ObjectConcurrentHashMap.Node[] var6 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var7 = var6;
         Float2ObjectConcurrentHashMap.Node var8 = null;
         Float2ObjectConcurrentHashMap.TableStack var9 = null;
         Float2ObjectConcurrentHashMap.TableStack var10 = null;
         int var11 = 0;
         int var12 = 0;
         int var13 = var6.length;
         int var14 = var6.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var15 = null;
            var15 = var8;
            if (var8 != null) {
               var15 = var15.next;
            }

            label78: {
               while (true) {
                  if (var15 != null) {
                     var8 = var15;
                     break label78;
                  }

                  if (var12 >= var13) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var16 = var7;
                  if (var7 == null) {
                     break;
                  }

                  int var18;
                  int var10000 = var18 = var16.length;
                  int var17 = var11;
                  if (var10000 <= var11 || var17 < 0) {
                     break;
                  }

                  if ((var15 = tabAt(var16, var17)) != null && var15.hash < 0) {
                     if (var15 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var7 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var15).nextTable;
                        var15 = null;
                        Float2ObjectConcurrentHashMap.TableStack var23 = var10;
                        if (var23 != null) {
                           var10 = var23.next;
                        } else {
                           var23 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var23.tab = var16;
                        var23.length = var18;
                        var23.index = var17;
                        var23.next = var9;
                        var9 = var23;
                        class="kw">continue;
                     }

                     if (var15 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var15 = ((Float2ObjectConcurrentHashMap.TreeBin)var15).first;
                     } else {
                        var15 = null;
                     }
                  }

                  if (var9 == null) {
                     if ((var11 = var17 + var14) >= var18) {
                        var11 = ++var12;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var19 = var9;
                        if (var9 != null) {
                           int var20 = var19.length;
                           if ((var11 += var19.length) >= var18) {
                              var18 = var20;
                              var11 = var19.index;
                              var7 = var19.tab;
                              var19.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var21 = var19.next;
                              var19.next = var10;
                              var9 = var21;
                              var10 = var19;
                              class="kw">continue;
                           }
                        }

                        if (var19 == null && (var11 += var14) >= var18) {
                           var11 = ++var12;
                        }
                        break;
                     }
                  }
               }

               var8 = null;
            }

            if (var15 == null) {
               break;
            }

            var1.accept(var15.key, var15.val, var2, var4);
            var5++;
         }
      }

      class="kw">return var5;
   }

   class="kw">public void replaceAll(Float2ObjectOperator<V> var1) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      Float2ObjectConcurrentHashMap.Node[] var2 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var3 = var2;
         Float2ObjectConcurrentHashMap.Node var4 = null;
         Float2ObjectConcurrentHashMap.TableStack var5 = null;
         Float2ObjectConcurrentHashMap.TableStack var6 = null;
         int var7 = 0;
         int var8 = 0;
         int var9 = var2.length;
         int var10 = var2.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var11 = null;
            var11 = var4;
            if (var4 != null) {
               var11 = var11.next;
            }

            label86: {
               while (true) {
                  if (var11 != null) {
                     var4 = var11;
                     break label86;
                  }

                  if (var8 >= var9) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var12 = var3;
                  if (var3 == null) {
                     break;
                  }

                  int var14;
                  int var10000 = var14 = var12.length;
                  int var13 = var7;
                  if (var10000 <= var7 || var13 < 0) {
                     break;
                  }

                  if ((var11 = tabAt(var12, var13)) != null && var11.hash < 0) {
                     if (var11 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var3 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var11).nextTable;
                        var11 = null;
                        Float2ObjectConcurrentHashMap.TableStack var22 = var6;
                        if (var22 != null) {
                           var6 = var22.next;
                        } else {
                           var22 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var22.tab = var12;
                        var22.length = var14;
                        var22.index = var13;
                        var22.next = var5;
                        var5 = var22;
                        class="kw">continue;
                     }

                     if (var11 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var11 = ((Float2ObjectConcurrentHashMap.TreeBin)var11).first;
                     } else {
                        var11 = null;
                     }
                  }

                  if (var5 == null) {
                     if ((var7 = var13 + var10) >= var14) {
                        var7 = ++var8;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var15 = var5;
                        if (var5 != null) {
                           int var16 = var15.length;
                           if ((var7 += var15.length) >= var14) {
                              var14 = var16;
                              var7 = var15.index;
                              var3 = var15.tab;
                              var15.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var17 = var15.next;
                              var15.next = var6;
                              var5 = var17;
                              var6 = var15;
                              class="kw">continue;
                           }
                        }

                        if (var15 == null && (var7 += var10) >= var14) {
                           var7 = ++var8;
                        }
                        break;
                     }
                  }
               }

               var4 = null;
            }

            if (var11 == null) {
               break;
            }

            Object var19 = var11.val;
            float var20 = var11.key;

            Object var21;
            do {
               var21 = var1.apply(var20, var19);
               if (var21 == null) {
                  throw new NullPointerException();
               }
            } while (this.replaceNode(var20, var21, var19) == null && (var19 = this.get(var20)) != null);
         }
      }
   }

   class="kw">public V computeIfAbsent(float var1, Float2ObjectConcurrentHashMap.FloatFunction<? class="kw">extends V> var2) {
      if (var1 == this.EMPTY) {
         throw new IllegalArgumentException("Key is EMPTY: " + this.EMPTY);
      }

      if (var2 == null) {
         throw new NullPointerException();
      }

      int var3 = spread(Float.hashCode(var1));
      Object var4 = null;
      int var5 = 0;
      Float2ObjectConcurrentHashMap.Node[] var6 = this.table;

      while (true) {
         int var8;
         while (var6 == null || (var8 = var6.length) == 0) {
            var6 = this.initTable();
         }

         Float2ObjectConcurrentHashMap.Node var7;
         int var9;
         if ((var7 = tabAt(var6, var9 = var8 - 1 & var3)) == null) {
            Float2ObjectConcurrentHashMap.Node var24 = new Float2ObjectConcurrentHashMap.ReservationNode<>(this.EMPTY);
            class="kw">synchronized (var24) {
               if (casTabAt(var6, var9, null, var24)) {
                  var5 = 1;
                  Float2ObjectConcurrentHashMap.Node var26 = null;

                  try {
                     if ((var4 = (V)var2.apply(var1)) != null) {
                        var26 = new Float2ObjectConcurrentHashMap.Node<>(this.EMPTY, var3, var1, var4, null);
                     }
                  } class="kw">finally {
                     setTabAt(var6, var9, var26);
                  }
               }
            }

            if (var5 != 0) {
               break;
            }
         } else {
            int var10 = var7.hash;
            if (var7.hash == -1) {
               var6 = this.helpTransfer(var6, var7);
            } else {
               boolean var11 = false;
               class="kw">synchronized (var7) {
                  if (tabAt(var6, var9) == var7) {
                     if (var10 < 0) {
                        if (var7 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                           var5 = 2;
                           Float2ObjectConcurrentHashMap.TreeBin var25 = (Float2ObjectConcurrentHashMap.TreeBin<V>)var7;
                           Float2ObjectConcurrentHashMap.TreeNode var27 = var25.root;
                           Float2ObjectConcurrentHashMap.TreeNode var15;
                           if (var25.root != null && (var15 = var27.findTreeNode(var3, var1, null)) != null) {
                              var4 = var15.val;
                           } else if ((var4 = (V)var2.apply(var1)) != null) {
                              var11 = true;
                              var25.putTreeVal(var3, var1, var4);
                           }
                        }
                     } else {
                        var5 = 1;
                        Float2ObjectConcurrentHashMap.Node var13 = var7;

                        while (true) {
                           if (var13.hash == var3) {
                              float var14 = var13.key;
                              if (var13.key == var1 || var14 != this.EMPTY && var1 == var14) {
                                 var4 = var13.val;
                                 break;
                              }
                           }

                           Float2ObjectConcurrentHashMap.Node var16 = var13;
                           if ((var13 = var13.next) == null) {
                              if ((var4 = (V)var2.apply(var1)) != null) {
                                 var11 = true;
                                 var16.next = new Float2ObjectConcurrentHashMap.Node<>(this.EMPTY, var3, var1, var4, null);
                              }
                              break;
                           }

                           var5++;
                        }
                     }
                  }
               }

               if (var5 != 0) {
                  if (var5 >= 8) {
                     this.treeifyBin(var6, var9);
                  }

                  if (!var11) {
                     class="kw">return var4;
                  }
                  break;
               }
            }
         }
      }

      if (var4 != null) {
         this.addCount(1L, var5);
      }

      class="kw">return var4;
   }

   class="kw">public V computeIfPresent(float var1, Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends V> var2) {
      if (var1 == this.EMPTY) {
         throw new IllegalArgumentException("Key is EMPTY: " + this.EMPTY);
      }

      if (var2 == null) {
         throw new NullPointerException();
      }

      int var3 = spread(Float.hashCode(var1));
      Object var4 = null;
      int var5 = 0;
      int var6 = 0;
      Float2ObjectConcurrentHashMap.Node[] var7 = this.table;

      while (true) {
         int var9;
         while (var7 == null || (var9 = var7.length) == 0) {
            var7 = this.initTable();
         }

         Float2ObjectConcurrentHashMap.Node var8;
         int var10;
         if ((var8 = tabAt(var7, var10 = var9 - 1 & var3)) == null) {
            break;
         }

         int var11 = var8.hash;
         if (var8.hash == -1) {
            var7 = this.helpTransfer(var7, var8);
         } else {
            class="kw">synchronized (var8) {
               if (tabAt(var7, var10) == var8) {
                  if (var11 < 0) {
                     if (var8 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var6 = 2;
                        Float2ObjectConcurrentHashMap.TreeBin var19 = (Float2ObjectConcurrentHashMap.TreeBin<V>)var8;
                        Float2ObjectConcurrentHashMap.TreeNode var20 = var19.root;
                        Float2ObjectConcurrentHashMap.TreeNode var21;
                        if (var19.root != null && (var21 = var20.findTreeNode(var3, var1, null)) != null) {
                           var4 = (V)var2.apply(var1, var21.val);
                           if (var4 != null) {
                              var21.val = var4;
                           } else {
                              var5 = -1;
                              if (var19.removeTreeNode(var21)) {
                                 setTabAt(var7, var10, this.untreeify(var19.first));
                              }
                           }
                        }
                     }
                  } else {
                     var6 = 1;
                     Float2ObjectConcurrentHashMap.Node var13 = var8;
                     Float2ObjectConcurrentHashMap.Node var14 = null;

                     while (true) {
                        if (var13.hash == var3) {
                           float var15 = var13.key;
                           if (var13.key == var1 || var15 != this.EMPTY && var1 == var15) {
                              var4 = (V)var2.apply(var1, var13.val);
                              if (var4 != null) {
                                 var13.val = var4;
                              } else {
                                 var5 = -1;
                                 Float2ObjectConcurrentHashMap.Node var16 = var13.next;
                                 if (var14 != null) {
                                    var14.next = var16;
                                 } else {
                                    setTabAt(var7, var10, var16);
                                 }
                              }
                              break;
                           }
                        }

                        var14 = var13;
                        if ((var13 = var13.next) == null) {
                           break;
                        }

                        var6++;
                     }
                  }
               }
            }

            if (var6 != 0) {
               break;
            }
         }
      }

      if (var5 != 0) {
         this.addCount(var5, var6);
      }

      class="kw">return var4;
   }

   class="kw">public V compute(float var1, Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends V> var2) {
      if (var1 == this.EMPTY) {
         throw new IllegalArgumentException("Key is EMPTY: " + this.EMPTY);
      }

      if (var2 == null) {
         throw new NullPointerException();
      }

      int var3 = spread(Float.hashCode(var1));
      Object var4 = null;
      int var5 = 0;
      int var6 = 0;
      Float2ObjectConcurrentHashMap.Node[] var7 = this.table;

      while (true) {
         int var9;
         while (var7 == null || (var9 = var7.length) == 0) {
            var7 = this.initTable();
         }

         Float2ObjectConcurrentHashMap.Node var8;
         int var10;
         if ((var8 = tabAt(var7, var10 = var9 - 1 & var3)) == null) {
            Float2ObjectConcurrentHashMap.Node var12 = new Float2ObjectConcurrentHashMap.ReservationNode<>(this.EMPTY);
            class="kw">synchronized (var12) {
               if (casTabAt(var7, var10, null, var12)) {
                  var6 = 1;
                  Float2ObjectConcurrentHashMap.Node var26 = null;

                  try {
                     if ((var4 = (V)var2.apply(var1, null)) != null) {
                        var5 = 1;
                        var26 = new Float2ObjectConcurrentHashMap.Node<>(this.EMPTY, var3, var1, var4, null);
                     }
                  } class="kw">finally {
                     setTabAt(var7, var10, var26);
                  }
               }
            }

            if (var6 != 0) {
               break;
            }
         } else {
            int var11 = var8.hash;
            if (var8.hash == -1) {
               var7 = this.helpTransfer(var7, var8);
            } else {
               class="kw">synchronized (var8) {
                  if (tabAt(var7, var10) == var8) {
                     if (var11 < 0) {
                        if (var8 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                           var6 = 1;
                           Float2ObjectConcurrentHashMap.TreeBin var24 = (Float2ObjectConcurrentHashMap.TreeBin<V>)var8;
                           Float2ObjectConcurrentHashMap.TreeNode var25 = var24.root;
                           Float2ObjectConcurrentHashMap.TreeNode var27;
                           if (var24.root != null) {
                              var27 = var25.findTreeNode(var3, var1, null);
                           } else {
                              var27 = null;
                           }

                           Object var28 = var27 == null ? null : var27.val;
                           var4 = (V)var2.apply(var1, var28);
                           if (var4 != null) {
                              if (var27 != null) {
                                 var27.val = var4;
                              } else {
                                 var5 = 1;
                                 var24.putTreeVal(var3, var1, var4);
                              }
                           } else if (var27 != null) {
                              var5 = -1;
                              if (var24.removeTreeNode(var27)) {
                                 setTabAt(var7, var10, this.untreeify(var24.first));
                              }
                           }
                        }
                     } else {
                        var6 = 1;
                        Float2ObjectConcurrentHashMap.Node var13 = var8;
                        Float2ObjectConcurrentHashMap.Node var14 = null;

                        while (true) {
                           if (var13.hash == var3) {
                              float var15 = var13.key;
                              if (var13.key == var1 || var15 != this.EMPTY && var1 == var15) {
                                 var4 = (V)var2.apply(var1, var13.val);
                                 if (var4 != null) {
                                    var13.val = var4;
                                 } else {
                                    var5 = -1;
                                    Float2ObjectConcurrentHashMap.Node var16 = var13.next;
                                    if (var14 != null) {
                                       var14.next = var16;
                                    } else {
                                       setTabAt(var7, var10, var16);
                                    }
                                 }
                                 break;
                              }
                           }

                           var14 = var13;
                           if ((var13 = var13.next) == null) {
                              var4 = (V)var2.apply(var1, null);
                              if (var4 != null) {
                                 var5 = 1;
                                 var14.next = new Float2ObjectConcurrentHashMap.Node<>(this.EMPTY, var3, var1, var4, null);
                              }
                              break;
                           }

                           var6++;
                        }
                     }
                  }
               }

               if (var6 != 0) {
                  if (var6 >= 8) {
                     this.treeifyBin(var7, var10);
                  }
                  break;
               }
            }
         }
      }

      if (var5 != 0) {
         this.addCount(var5, var6);
      }

      class="kw">return var4;
   }

   class="kw">public V merge(float var1, V var2, BiFunction<? super V, ? super V, ? class="kw">extends V> var3) {
      if (var1 == this.EMPTY) {
         throw new IllegalArgumentException("Key is EMPTY: " + this.EMPTY);
      }

      if (var2 != null && var3 != null) {
         int var4 = spread(Float.hashCode(var1));
         Object var5 = null;
         int var6 = 0;
         int var7 = 0;
         Float2ObjectConcurrentHashMap.Node[] var8 = this.table;

         while (true) {
            int var10;
            while (var8 == null || (var10 = var8.length) == 0) {
               var8 = this.initTable();
            }

            Float2ObjectConcurrentHashMap.Node var9;
            int var11;
            if ((var9 = tabAt(var8, var11 = var10 - 1 & var4)) == null) {
               if (casTabAt(var8, var11, null, new Float2ObjectConcurrentHashMap.Node<>(this.EMPTY, var4, var1, var2, null))) {
                  var6 = 1;
                  var5 = var2;
                  break;
               }
            } else {
               int var12 = var9.hash;
               if (var9.hash == -1) {
                  var8 = this.helpTransfer(var8, var9);
               } else {
                  class="kw">synchronized (var9) {
                     if (tabAt(var8, var11) == var9) {
                        if (var12 < 0) {
                           if (var9 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                              var7 = 2;
                              Float2ObjectConcurrentHashMap.TreeBin var20 = (Float2ObjectConcurrentHashMap.TreeBin<V>)var9;
                              Float2ObjectConcurrentHashMap.TreeNode var21 = var20.root;
                              Float2ObjectConcurrentHashMap.TreeNode var22 = var21 == null ? null : var21.findTreeNode(var4, var1, null);
                              var5 = var22 == null ? var2 : var3.apply(var22.val, var2);
                              if (var5 != null) {
                                 if (var22 != null) {
                                    var22.val = var5;
                                 } else {
                                    var6 = 1;
                                    var20.putTreeVal(var4, var1, var5);
                                 }
                              } else if (var22 != null) {
                                 var6 = -1;
                                 if (var20.removeTreeNode(var22)) {
                                    setTabAt(var8, var11, this.untreeify(var20.first));
                                 }
                              }
                           }
                        } else {
                           var7 = 1;
                           Float2ObjectConcurrentHashMap.Node var14 = var9;
                           Float2ObjectConcurrentHashMap.Node var15 = null;

                           while (true) {
                              if (var14.hash == var4) {
                                 float var16 = var14.key;
                                 if (var14.key == var1 || var16 != this.EMPTY && var1 == var16) {
                                    var5 = (V)var3.apply(var14.val, var2);
                                    if (var5 != null) {
                                       var14.val = var5;
                                    } else {
                                       var6 = -1;
                                       Float2ObjectConcurrentHashMap.Node var17 = var14.next;
                                       if (var15 != null) {
                                          var15.next = var17;
                                       } else {
                                          setTabAt(var8, var11, var17);
                                       }
                                    }
                                    break;
                                 }
                              }

                              var15 = var14;
                              if ((var14 = var14.next) == null) {
                                 var6 = 1;
                                 var5 = var2;
                                 var15.next = new Float2ObjectConcurrentHashMap.Node<>(this.EMPTY, var4, var1, var5, null);
                                 break;
                              }

                              var7++;
                           }
                        }
                     }
                  }

                  if (var7 != 0) {
                     if (var7 >= 8) {
                        this.treeifyBin(var8, var11);
                     }
                     break;
                  }
               }
            }
         }

         if (var6 != 0) {
            this.addCount(var6, var7);
         }

         class="kw">return var5;
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public long mappingCount() {
      long var1 = this.sumCount();
      class="kw">return var1 < 0L ? 0L : var1;
   }

   class="kw">public class="kw">static FloatSet newKeySet() {
      class="kw">return new Float2ObjectConcurrentHashMap.KeySetView<>(new Float2ObjectConcurrentHashMap<>(), Boolean.TRUE);
   }

   class="kw">public class="kw">static Float2ObjectConcurrentHashMap.KeySetView<Boolean> newKeySet(int var0) {
      class="kw">return new Float2ObjectConcurrentHashMap.KeySetView<>(new Float2ObjectConcurrentHashMap<>(var0), Boolean.TRUE);
   }

   class="kw">public Float2ObjectConcurrentHashMap.KeySetView<V> keySet(V var1) {
      if (var1 == null) {
         throw new NullPointerException();
      } else {
         class="kw">return new Float2ObjectConcurrentHashMap.KeySetView<>(this, var1);
      }
   }

   class="kw">protected class="kw">static class="kw">final int resizeStamp(int var0) {
      class="kw">return Integer.numberOfLeadingZeros(var0) | 1 << RESIZE_STAMP_BITS - 1;
   }

   class="kw">protected class="kw">final Float2ObjectConcurrentHashMap.Node<V>[] initTable() {
      Float2ObjectConcurrentHashMap.Node[] var1;
      while (true) {
         var1 = this.table;
         if (this.table != null && var1.length != 0) {
            break;
         }

         int var2 = this.sizeCtl;
         if (this.sizeCtl < 0) {
            Thread.yield();
         } else if (U.compareAndSwapInt(this, SIZECTL, var2, -1)) {
            try {
               var1 = this.table;
               if (this.table == null || var1.length == 0) {
                  int var3 = var2 > 0 ? var2 : 16;
                  Float2ObjectConcurrentHashMap.Node[] var4 = new Float2ObjectConcurrentHashMap.Node[var3];
                  var1 = var4;
                  this.table = var4;
                  var2 = var3 - (var3 >>> 2);
               }
               break;
            } class="kw">finally {
               this.sizeCtl = var2;
            }
         }
      }

      class="kw">return var1;
   }

   class="kw">protected class="kw">final void addCount(long var1, int var3) {
      int var13;
      label77: {
         long var7;
         label74: {
            Float2ObjectConcurrentHashMap.CounterCell[] var4 = this.counterCells;
            if (this.counterCells == null) {
               long var5 = this.baseCount;
               if (U.compareAndSwapLong(this, BASECOUNT, this.baseCount, var7 = var5 + var1)) {
                  break label74;
               }
            }

            var13 = (boolean)1;
            Float2ObjectConcurrentHashMap.CounterCell var9;
            int var12;
            if (var4 == null || (var12 = var4.length - 1) < 0 || (var9 = var4[TLRUtil.getProbe() & var12]) == null) {
               break label77;
            }

            long var10 = var9.value;
            if (!(var13 = U.compareAndSwapLong(var9, CELLVALUE, var9.value, var10 + var1))) {
               break label77;
            }

            if (var3 <= 1) {
               class="kw">return;
            }

            var7 = this.sumCount();
         }

         if (var3 >= 0) {
            while (true) {
               int var16 = this.sizeCtl;
               if (var7 < this.sizeCtl) {
                  break;
               }

               Float2ObjectConcurrentHashMap.Node[] var14 = this.table;
               int var11;
               if (this.table == null || (var11 = var14.length) >= 1073741824) {
                  break;
               }

               var13 = (boolean)resizeStamp(var11);
               if (var16 < 0) {
                  if (var16 >>> RESIZE_STAMP_SHIFT != var13 || var16 == var13 + 1 || var16 == var13 + MAX_RESIZERS) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var15 = this.nextTable;
                  if (this.nextTable == null || this.transferIndex <= 0) {
                     break;
                  }

                  if (U.compareAndSwapInt(this, SIZECTL, var16, var16 + 1)) {
                     this.transfer(var14, var15);
                  }
               } else if (U.compareAndSwapInt(this, SIZECTL, var16, (var13 << RESIZE_STAMP_SHIFT) + 2)) {
                  this.transfer(var14, null);
               }

               var7 = this.sumCount();
            }
         }

         class="kw">return;
      }

      this.fullAddCount(var1, var13);
   }

   class="kw">protected class="kw">final Float2ObjectConcurrentHashMap.Node<V>[] helpTransfer(
      Float2ObjectConcurrentHashMap.Node<V>[] var1, Float2ObjectConcurrentHashMap.Node<V> var2
   ) {
      if (var1 != null && var2 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
         Float2ObjectConcurrentHashMap.Node[] var3 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var2).nextTable;
         if (((Float2ObjectConcurrentHashMap.ForwardingNode)var2).nextTable != null) {
            int var5 = resizeStamp(var1.length);

            while (var3 == this.nextTable && this.table == var1) {
               int var4 = this.sizeCtl;
               if (this.sizeCtl >= 0 || var4 >>> RESIZE_STAMP_SHIFT != var5 || var4 == var5 + 1 || var4 == var5 + MAX_RESIZERS || this.transferIndex <= 0) {
                  break;
               }

               if (U.compareAndSwapInt(this, SIZECTL, var4, var4 + 1)) {
                  this.transfer(var1, var3);
                  break;
               }
            }

            class="kw">return var3;
         }
      }

      class="kw">return this.table;
   }

   class="kw">protected class="kw">final void tryPresize(int var1) {
      int var2 = var1 >= 536870912 ? 1073741824 : tableSizeFor(var1 + (var1 >>> 1) + 1);

      while (true) {
         int var3 = this.sizeCtl;
         if (this.sizeCtl < 0) {
            break;
         }

         Float2ObjectConcurrentHashMap.Node[] var4 = this.table;
         int var5;
         if (var4 != null && (var5 = var4.length) != 0) {
            if (var2 <= var3 || var5 >= 1073741824) {
               break;
            }

            if (var4 == this.table) {
               int var11 = resizeStamp(var5);
               if (var3 < 0) {
                  if (var3 >>> RESIZE_STAMP_SHIFT != var11 || var3 == var11 + 1 || var3 == var11 + MAX_RESIZERS) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var7 = this.nextTable;
                  if (this.nextTable == null || this.transferIndex <= 0) {
                     break;
                  }

                  if (U.compareAndSwapInt(this, SIZECTL, var3, var3 + 1)) {
                     this.transfer(var4, var7);
                  }
               } else if (U.compareAndSwapInt(this, SIZECTL, var3, (var11 << RESIZE_STAMP_SHIFT) + 2)) {
                  this.transfer(var4, null);
               }
            }
         } else {
            var5 = var3 > var2 ? var3 : var2;
            if (U.compareAndSwapInt(this, SIZECTL, var3, -1)) {
               try {
                  if (this.table == var4) {
                     Float2ObjectConcurrentHashMap.Node[] var6 = new Float2ObjectConcurrentHashMap.Node[var5];
                     this.table = var6;
                     var3 = var5 - (var5 >>> 2);
                  }
               } class="kw">finally {
                  this.sizeCtl = var3;
               }
            }
         }
      }
   }

   class="kw">protected class="kw">final void transfer(Float2ObjectConcurrentHashMap.Node<V>[] var1, Float2ObjectConcurrentHashMap.Node<V>[] var2) {
      int var3 = var1.length;
      int var4;
      if ((var4 = NCPU > 1 ? (var3 >>> 3) / NCPU : var3) < 16) {
         var4 = 16;
      }

      if (var2 == null) {
         try {
            Float2ObjectConcurrentHashMap.Node[] var5 = new Float2ObjectConcurrentHashMap.Node[var3 << 1];
            var2 = var5;
         } catch (Throwable var27) {
            this.sizeCtl = Integer.MAX_VALUE;
            class="kw">return;
         }

         this.nextTable = var2;
         this.transferIndex = var3;
      }

      int var29 = var2.length;
      Float2ObjectConcurrentHashMap.ForwardingNode var6 = new Float2ObjectConcurrentHashMap.ForwardingNode<>(this.EMPTY, var2);
      boolean var7 = true;
      boolean var8 = false;
      int var9 = 0;
      int var10 = 0;

      while (true) {
         while (!var7) {
            if (var9 >= 0 && var9 < var3 && var9 + var3 < var29) {
               Float2ObjectConcurrentHashMap.Node var11;
               if ((var11 = tabAt(var1, var9)) == null) {
                  var7 = casTabAt(var1, var9, null, var6);
               } else {
                  int var12 = var11.hash;
                  if (var11.hash == -1) {
                     var7 = true;
                  } else {
                     class="kw">synchronized (var11) {
                        if (tabAt(var1, var9) == var11) {
                           if (var12 >= 0) {
                              int var16 = var12 & var3;
                              Float2ObjectConcurrentHashMap.Node var17 = var11;

                              for (Float2ObjectConcurrentHashMap.Node var18 = var11.next; var18 != null; var18 = var18.next) {
                                 int var19 = var18.hash & var3;
                                 if (var19 != var16) {
                                    var16 = var19;
                                    var17 = var18;
                                 }
                              }

                              Float2ObjectConcurrentHashMap.Node var14;
                              Float2ObjectConcurrentHashMap.Node var15;
                              if (var16 == 0) {
                                 var14 = var17;
                                 var15 = null;
                              } else {
                                 var15 = var17;
                                 var14 = null;
                              }

                              for (Float2ObjectConcurrentHashMap.Node var36 = var11; var36 != var17; var36 = var36.next) {
                                 int var38 = var36.hash;
                                 float var20 = var36.key;
                                 Object var21 = var36.val;
                                 if ((var38 & var3) == 0) {
                                    var14 = new Float2ObjectConcurrentHashMap.Node<>(this.EMPTY, var38, var20, var21, var14);
                                 } else {
                                    var15 = new Float2ObjectConcurrentHashMap.Node<>(this.EMPTY, var38, var20, var21, var15);
                                 }
                              }

                              setTabAt(var2, var9, var14);
                              setTabAt(var2, var9 + var3, var15);
                              setTabAt(var1, var9, var6);
                              var7 = true;
                           } else if (var11 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin var34) {
                              Float2ObjectConcurrentHashMap.TreeNode var35 = null;
                              Float2ObjectConcurrentHashMap.TreeNode var37 = null;
                              Float2ObjectConcurrentHashMap.TreeNode var39 = null;
                              Float2ObjectConcurrentHashMap.TreeNode var40 = null;
                              int var41 = 0;
                              int var22 = 0;

                              for (Float2ObjectConcurrentHashMap.Node var23 = var34.first; var23 != null; var23 = var23.next) {
                                 int var24 = var23.hash;
                                 Float2ObjectConcurrentHashMap.TreeNode var25 = new Float2ObjectConcurrentHashMap.TreeNode<>(
                                    this.EMPTY, var24, var23.key, var23.val, null, null
                                 );
                                 if ((var24 & var3) == 0) {
                                    if ((var25.prev = var37) == null) {
                                       var35 = var25;
                                    } else {
                                       var37.next = var25;
                                    }

                                    var37 = var25;
                                    var41++;
                                 } else {
                                    if ((var25.prev = var40) == null) {
                                       var39 = var25;
                                    } else {
                                       var40.next = var25;
                                    }

                                    var40 = var25;
                                    var22++;
                                 }
                              }

                              Float2ObjectConcurrentHashMap.Node var31 = var41 <= 6
                                 ? this.untreeify(var35)
                                 : (var22 != 0 ? new Float2ObjectConcurrentHashMap.TreeBin<>(this.EMPTY, var35) : var34);
                              Float2ObjectConcurrentHashMap.Node var33 = var22 <= 6
                                 ? this.untreeify(var39)
                                 : (var41 != 0 ? new Float2ObjectConcurrentHashMap.TreeBin<>(this.EMPTY, var39) : var34);
                              setTabAt(var2, var9, var31);
                              setTabAt(var2, var9 + var3, var33);
                              setTabAt(var1, var9, var6);
                              var7 = true;
                           }
                        }
                     }
                  }
               }
            } else {
               if (var8) {
                  this.nextTable = null;
                  this.table = var2;
                  this.sizeCtl = (var3 << 1) - (var3 >>> 1);
                  class="kw">return;
               }

               int var13 = this.sizeCtl;
               if (U.compareAndSwapInt(this, SIZECTL, this.sizeCtl, var13 - 1)) {
                  if (var13 - 2 != resizeStamp(var3) << RESIZE_STAMP_SHIFT) {
                     class="kw">return;
                  }

                  var7 = true;
                  var8 = true;
                  var9 = var3;
               }
            }
         }

         if (--var9 < var10 && !var8) {
            int var30 = this.transferIndex;
            if (this.transferIndex <= 0) {
               var9 = -1;
               var7 = false;
            } else {
               int var32;
               if (U.compareAndSwapInt(this, TRANSFERINDEX, var30, var32 = var30 > var4 ? var30 - var4 : 0)) {
                  var10 = var32;
                  var9 = var30 - 1;
                  var7 = false;
               }
            }
         } else {
            var7 = false;
         }
      }
   }

   class="kw">protected class="kw">final long sumCount() {
      Float2ObjectConcurrentHashMap.CounterCell[] var1 = this.counterCells;
      long var3 = this.baseCount;
      if (var1 != null) {
         for (int var5 = 0; var5 < var1.length; var5++) {
            Float2ObjectConcurrentHashMap.CounterCell var2;
            if ((var2 = var1[var5]) != null) {
               var3 += var2.value;
            }
         }
      }

      class="kw">return var3;
   }

   class="kw">protected class="kw">final void fullAddCount(long var1, boolean var3) {
      int var4;
      if ((var4 = TLRUtil.getProbe()) == 0) {
         TLRUtil.localInit();
         var4 = TLRUtil.getProbe();
         var3 = true;
      }

      boolean var5 = false;

      while (true) {
         Float2ObjectConcurrentHashMap.CounterCell[] var6 = this.counterCells;
         int var8;
         if (this.counterCells != null && (var8 = var6.length) > 0) {
            Float2ObjectConcurrentHashMap.CounterCell var7;
            if ((var7 = var6[var8 - 1 & var4]) == null) {
               if (this.cellsBusy == 0) {
                  Float2ObjectConcurrentHashMap.CounterCell var32 = new Float2ObjectConcurrentHashMap.CounterCell(var1);
                  if (this.cellsBusy == 0 && U.compareAndSwapInt(this, CELLSBUSY, 0, 1)) {
                     boolean var34 = false;

                     try {
                        Float2ObjectConcurrentHashMap.CounterCell[] var13 = this.counterCells;
                        int var14;
                        int var15;
                        if (this.counterCells != null && (var14 = var13.length) > 0 && var13[var15 = var14 - 1 & var4] == null) {
                           var13[var15] = var32;
                           var34 = true;
                        }
                     } class="kw">finally {
                        this.cellsBusy = 0;
                     }

                     if (var34) {
                        break;
                     }
                     class="kw">continue;
                  }
               }

               var5 = false;
            } else if (!var3) {
               var3 = true;
            } else {
               long var31 = var7.value;
               if (U.compareAndSwapLong(var7, CELLVALUE, var7.value, var31 + var1)) {
                  break;
               }

               if (this.counterCells != var6 || var8 >= NCPU) {
                  var5 = false;
               } else if (!var5) {
                  var5 = true;
               } else if (this.cellsBusy == 0 && U.compareAndSwapInt(this, CELLSBUSY, 0, 1)) {
                  try {
                     if (this.counterCells == var6) {
                        Float2ObjectConcurrentHashMap.CounterCell[] var33 = new Float2ObjectConcurrentHashMap.CounterCell[var8 << 1];

                        for (int var35 = 0; var35 < var8; var35++) {
                           var33[var35] = var6[var35];
                        }

                        this.counterCells = var33;
                     }
                  } class="kw">finally {
                     this.cellsBusy = 0;
                  }

                  var5 = false;
                  class="kw">continue;
               }
            }

            var4 = TLRUtil.advanceProbe(var4);
         } else if (this.cellsBusy == 0 && this.counterCells == var6 && U.compareAndSwapInt(this, CELLSBUSY, 0, 1)) {
            boolean var11 = false;

            try {
               if (this.counterCells == var6) {
                  Float2ObjectConcurrentHashMap.CounterCell[] var12 = new Float2ObjectConcurrentHashMap.CounterCell[2];
                  var12[var4 & 1] = new Float2ObjectConcurrentHashMap.CounterCell(var1);
                  this.counterCells = var12;
                  var11 = true;
               }
            } class="kw">finally {
               this.cellsBusy = 0;
            }

            if (var11) {
               break;
            }
         } else {
            long var9 = this.baseCount;
            if (U.compareAndSwapLong(this, BASECOUNT, this.baseCount, var9 + var1)) {
               break;
            }
         }
      }
   }

   class="kw">protected class="kw">final void treeifyBin(Float2ObjectConcurrentHashMap.Node<V>[] var1, int var2) {
      if (var1 != null) {
         int var4;
         if ((var4 = var1.length) < 64) {
            this.tryPresize(var4 << 1);
         } else {
            Float2ObjectConcurrentHashMap.Node var3;
            if ((var3 = tabAt(var1, var2)) != null && var3.hash >= 0) {
               class="kw">synchronized (var3) {
                  if (tabAt(var1, var2) == var3) {
                     Float2ObjectConcurrentHashMap.TreeNode var7 = null;
                     Float2ObjectConcurrentHashMap.TreeNode var8 = null;

                     for (Float2ObjectConcurrentHashMap.Node var9 = var3; var9 != null; var9 = var9.next) {
                        Float2ObjectConcurrentHashMap.TreeNode var10 = new Float2ObjectConcurrentHashMap.TreeNode<>(
                           this.EMPTY, var9.hash, var9.key, var9.val, null, null
                        );
                        if ((var10.prev = var8) == null) {
                           var7 = var10;
                        } else {
                           var8.next = var10;
                        }

                        var8 = var10;
                     }

                     setTabAt(var1, var2, new Float2ObjectConcurrentHashMap.TreeBin<>(this.EMPTY, var7));
                  }
               }
            }
         }
      }
   }

   class="kw">protected <V> Float2ObjectConcurrentHashMap.Node<V> untreeify(Float2ObjectConcurrentHashMap.Node<V> var1) {
      Float2ObjectConcurrentHashMap.Node var2 = null;
      Float2ObjectConcurrentHashMap.Node var3 = null;

      for (Float2ObjectConcurrentHashMap.Node var4 = var1; var4 != null; var4 = var4.next) {
         Float2ObjectConcurrentHashMap.Node var5 = new Float2ObjectConcurrentHashMap.Node<>(this.EMPTY, var4.hash, var4.key, var4.val, null);
         if (var3 == null) {
            var2 = var5;
         } else {
            var3.next = var5;
         }

         var3 = var5;
      }

      class="kw">return var2;
   }

   class="kw">protected class="kw">final int batchFor(long var1) {
      long var3;
      if (var1 != Long.MAX_VALUE && (var3 = this.sumCount()) > 1L && var3 >= var1) {
         int var5 = ForkJoinPool.getCommonPoolParallelism() << 2;
         long var6;
         class="kw">return var1 > 0L && (var6 = var3 / var1) < var5 ? (int)var6 : var5;
      } else {
         class="kw">return 0;
      }
   }

   class="kw">public void forEach(long var1, Float2ObjectConcurrentHashMap.FloatObjConsumer<? super V> var3) {
      if (var3 == null) {
         throw new NullPointerException();
      }

      new Float2ObjectConcurrentHashMap.ForEachMappingTask<>(null, this.batchFor(var1), 0, 0, this.table, var3).invoke();
   }

   class="kw">public <U> void forEach(long var1, Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends U> var3, Consumer<? super U> var4) {
      if (var3 != null && var4 != null) {
         new Float2ObjectConcurrentHashMap.ForEachTransformedMappingTask<>(null, this.batchFor(var1), 0, 0, this.table, var3, var4).invoke();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public <U> U search(long var1, Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends U> var3) {
      if (var3 == null) {
         throw new NullPointerException();
      } else {
         class="kw">return new Float2ObjectConcurrentHashMap.SearchMappingsTask<>(null, this.batchFor(var1), 0, 0, this.table, var3, new AtomicReference()).invoke();
      }
   }

   class="kw">public <U> U search(Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends U> var1) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      Float2ObjectConcurrentHashMap.Node[] var2 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var3 = var2;
         Float2ObjectConcurrentHashMap.Node var4 = null;
         Float2ObjectConcurrentHashMap.TableStack var5 = null;
         Float2ObjectConcurrentHashMap.TableStack var6 = null;
         int var7 = 0;
         int var8 = 0;
         int var9 = var2.length;
         int var10 = var2.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var11 = null;
            var11 = var4;
            if (var4 != null) {
               var11 = var11.next;
            }

            label81: {
               while (true) {
                  if (var11 != null) {
                     var4 = var11;
                     break label81;
                  }

                  if (var8 >= var9) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var12 = var3;
                  if (var3 == null) {
                     break;
                  }

                  int var14;
                  int var10000 = var14 = var12.length;
                  int var13 = var7;
                  if (var10000 <= var7 || var13 < 0) {
                     break;
                  }

                  if ((var11 = tabAt(var12, var13)) != null && var11.hash < 0) {
                     if (var11 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var3 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var11).nextTable;
                        var11 = null;
                        Float2ObjectConcurrentHashMap.TableStack var20 = var6;
                        if (var20 != null) {
                           var6 = var20.next;
                        } else {
                           var20 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var20.tab = var12;
                        var20.length = var14;
                        var20.index = var13;
                        var20.next = var5;
                        var5 = var20;
                        class="kw">continue;
                     }

                     if (var11 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var11 = ((Float2ObjectConcurrentHashMap.TreeBin)var11).first;
                     } else {
                        var11 = null;
                     }
                  }

                  if (var5 == null) {
                     if ((var7 = var13 + var10) >= var14) {
                        var7 = ++var8;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var15 = var5;
                        if (var5 != null) {
                           int var16 = var15.length;
                           if ((var7 += var15.length) >= var14) {
                              var14 = var16;
                              var7 = var15.index;
                              var3 = var15.tab;
                              var15.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var17 = var15.next;
                              var15.next = var6;
                              var5 = var17;
                              var6 = var15;
                              class="kw">continue;
                           }
                        }

                        if (var15 == null && (var7 += var10) >= var14) {
                           var7 = ++var8;
                        }
                        break;
                     }
                  }
               }

               var4 = null;
            }

            if (var11 == null) {
               break;
            }

            Object var19 = (U)var1.apply(var11.key, var11.val);
            if (var19 != null) {
               class="kw">return var19;
            }
         }
      }

      class="kw">return null;
   }

   class="kw">public <U, X> U search(Float2ObjectConcurrentHashMap.FloatBiObjFunction<? super V, X, ? class="kw">extends U> var1, X var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      Float2ObjectConcurrentHashMap.Node[] var3 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var4 = var3;
         Float2ObjectConcurrentHashMap.Node var5 = null;
         Float2ObjectConcurrentHashMap.TableStack var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         int var8 = 0;
         int var9 = 0;
         int var10 = var3.length;
         int var11 = var3.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var12 = null;
            var12 = var5;
            if (var5 != null) {
               var12 = var12.next;
            }

            label81: {
               while (true) {
                  if (var12 != null) {
                     var5 = var12;
                     break label81;
                  }

                  if (var9 >= var10) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var13 = var4;
                  if (var4 == null) {
                     break;
                  }

                  int var15;
                  int var10000 = var15 = var13.length;
                  int var14 = var8;
                  if (var10000 <= var8 || var14 < 0) {
                     break;
                  }

                  if ((var12 = tabAt(var13, var14)) != null && var12.hash < 0) {
                     if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var4 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var12).nextTable;
                        var12 = null;
                        Float2ObjectConcurrentHashMap.TableStack var21 = var7;
                        if (var21 != null) {
                           var7 = var21.next;
                        } else {
                           var21 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var21.tab = var13;
                        var21.length = var15;
                        var21.index = var14;
                        var21.next = var6;
                        var6 = var21;
                        class="kw">continue;
                     }

                     if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var12 = ((Float2ObjectConcurrentHashMap.TreeBin)var12).first;
                     } else {
                        var12 = null;
                     }
                  }

                  if (var6 == null) {
                     if ((var8 = var14 + var11) >= var15) {
                        var8 = ++var9;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var16 = var6;
                        if (var6 != null) {
                           int var17 = var16.length;
                           if ((var8 += var16.length) >= var15) {
                              var15 = var17;
                              var8 = var16.index;
                              var4 = var16.tab;
                              var16.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var18 = var16.next;
                              var16.next = var7;
                              var6 = var18;
                              var7 = var16;
                              class="kw">continue;
                           }
                        }

                        if (var16 == null && (var8 += var11) >= var15) {
                           var8 = ++var9;
                        }
                        break;
                     }
                  }
               }

               var5 = null;
            }

            if (var12 == null) {
               break;
            }

            Object var20 = (U)var1.apply(var12.key, var12.val, var2);
            if (var20 != null) {
               class="kw">return var20;
            }
         }
      }

      class="kw">return null;
   }

   class="kw">public <U> U searchWithByte(Float2ObjectConcurrentHashMap.FloatObjByteFunction<? super V, ? class="kw">extends U> var1, byte var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      Float2ObjectConcurrentHashMap.Node[] var3 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var4 = var3;
         Float2ObjectConcurrentHashMap.Node var5 = null;
         Float2ObjectConcurrentHashMap.TableStack var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         int var8 = 0;
         int var9 = 0;
         int var10 = var3.length;
         int var11 = var3.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var12 = null;
            var12 = var5;
            if (var5 != null) {
               var12 = var12.next;
            }

            label81: {
               while (true) {
                  if (var12 != null) {
                     var5 = var12;
                     break label81;
                  }

                  if (var9 >= var10) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var13 = var4;
                  if (var4 == null) {
                     break;
                  }

                  int var15;
                  int var10000 = var15 = var13.length;
                  int var14 = var8;
                  if (var10000 <= var8 || var14 < 0) {
                     break;
                  }

                  if ((var12 = tabAt(var13, var14)) != null && var12.hash < 0) {
                     if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var4 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var12).nextTable;
                        var12 = null;
                        Float2ObjectConcurrentHashMap.TableStack var21 = var7;
                        if (var21 != null) {
                           var7 = var21.next;
                        } else {
                           var21 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var21.tab = var13;
                        var21.length = var15;
                        var21.index = var14;
                        var21.next = var6;
                        var6 = var21;
                        class="kw">continue;
                     }

                     if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var12 = ((Float2ObjectConcurrentHashMap.TreeBin)var12).first;
                     } else {
                        var12 = null;
                     }
                  }

                  if (var6 == null) {
                     if ((var8 = var14 + var11) >= var15) {
                        var8 = ++var9;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var16 = var6;
                        if (var6 != null) {
                           int var17 = var16.length;
                           if ((var8 += var16.length) >= var15) {
                              var15 = var17;
                              var8 = var16.index;
                              var4 = var16.tab;
                              var16.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var18 = var16.next;
                              var16.next = var7;
                              var6 = var18;
                              var7 = var16;
                              class="kw">continue;
                           }
                        }

                        if (var16 == null && (var8 += var11) >= var15) {
                           var8 = ++var9;
                        }
                        break;
                     }
                  }
               }

               var5 = null;
            }

            if (var12 == null) {
               break;
            }

            Object var20 = (U)var1.apply(var12.key, var12.val, var2);
            if (var20 != null) {
               class="kw">return var20;
            }
         }
      }

      class="kw">return null;
   }

   class="kw">public <U> U searchWithShort(Float2ObjectConcurrentHashMap.FloatObjShortFunction<? super V, ? class="kw">extends U> var1, short var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      Float2ObjectConcurrentHashMap.Node[] var3 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var4 = var3;
         Float2ObjectConcurrentHashMap.Node var5 = null;
         Float2ObjectConcurrentHashMap.TableStack var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         int var8 = 0;
         int var9 = 0;
         int var10 = var3.length;
         int var11 = var3.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var12 = null;
            var12 = var5;
            if (var5 != null) {
               var12 = var12.next;
            }

            label81: {
               while (true) {
                  if (var12 != null) {
                     var5 = var12;
                     break label81;
                  }

                  if (var9 >= var10) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var13 = var4;
                  if (var4 == null) {
                     break;
                  }

                  int var15;
                  int var10000 = var15 = var13.length;
                  int var14 = var8;
                  if (var10000 <= var8 || var14 < 0) {
                     break;
                  }

                  if ((var12 = tabAt(var13, var14)) != null && var12.hash < 0) {
                     if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var4 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var12).nextTable;
                        var12 = null;
                        Float2ObjectConcurrentHashMap.TableStack var21 = var7;
                        if (var21 != null) {
                           var7 = var21.next;
                        } else {
                           var21 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var21.tab = var13;
                        var21.length = var15;
                        var21.index = var14;
                        var21.next = var6;
                        var6 = var21;
                        class="kw">continue;
                     }

                     if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var12 = ((Float2ObjectConcurrentHashMap.TreeBin)var12).first;
                     } else {
                        var12 = null;
                     }
                  }

                  if (var6 == null) {
                     if ((var8 = var14 + var11) >= var15) {
                        var8 = ++var9;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var16 = var6;
                        if (var6 != null) {
                           int var17 = var16.length;
                           if ((var8 += var16.length) >= var15) {
                              var15 = var17;
                              var8 = var16.index;
                              var4 = var16.tab;
                              var16.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var18 = var16.next;
                              var16.next = var7;
                              var6 = var18;
                              var7 = var16;
                              class="kw">continue;
                           }
                        }

                        if (var16 == null && (var8 += var11) >= var15) {
                           var8 = ++var9;
                        }
                        break;
                     }
                  }
               }

               var5 = null;
            }

            if (var12 == null) {
               break;
            }

            Object var20 = (U)var1.apply(var12.key, var12.val, var2);
            if (var20 != null) {
               class="kw">return var20;
            }
         }
      }

      class="kw">return null;
   }

   class="kw">public <U> U searchWithInt(Float2ObjectConcurrentHashMap.FloatObjIntFunction<? super V, ? class="kw">extends U> var1, int var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      Float2ObjectConcurrentHashMap.Node[] var3 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var4 = var3;
         Float2ObjectConcurrentHashMap.Node var5 = null;
         Float2ObjectConcurrentHashMap.TableStack var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         int var8 = 0;
         int var9 = 0;
         int var10 = var3.length;
         int var11 = var3.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var12 = null;
            var12 = var5;
            if (var5 != null) {
               var12 = var12.next;
            }

            label81: {
               while (true) {
                  if (var12 != null) {
                     var5 = var12;
                     break label81;
                  }

                  if (var9 >= var10) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var13 = var4;
                  if (var4 == null) {
                     break;
                  }

                  int var15;
                  int var10000 = var15 = var13.length;
                  int var14 = var8;
                  if (var10000 <= var8 || var14 < 0) {
                     break;
                  }

                  if ((var12 = tabAt(var13, var14)) != null && var12.hash < 0) {
                     if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var4 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var12).nextTable;
                        var12 = null;
                        Float2ObjectConcurrentHashMap.TableStack var21 = var7;
                        if (var21 != null) {
                           var7 = var21.next;
                        } else {
                           var21 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var21.tab = var13;
                        var21.length = var15;
                        var21.index = var14;
                        var21.next = var6;
                        var6 = var21;
                        class="kw">continue;
                     }

                     if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var12 = ((Float2ObjectConcurrentHashMap.TreeBin)var12).first;
                     } else {
                        var12 = null;
                     }
                  }

                  if (var6 == null) {
                     if ((var8 = var14 + var11) >= var15) {
                        var8 = ++var9;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var16 = var6;
                        if (var6 != null) {
                           int var17 = var16.length;
                           if ((var8 += var16.length) >= var15) {
                              var15 = var17;
                              var8 = var16.index;
                              var4 = var16.tab;
                              var16.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var18 = var16.next;
                              var16.next = var7;
                              var6 = var18;
                              var7 = var16;
                              class="kw">continue;
                           }
                        }

                        if (var16 == null && (var8 += var11) >= var15) {
                           var8 = ++var9;
                        }
                        break;
                     }
                  }
               }

               var5 = null;
            }

            if (var12 == null) {
               break;
            }

            Object var20 = (U)var1.apply(var12.key, var12.val, var2);
            if (var20 != null) {
               class="kw">return var20;
            }
         }
      }

      class="kw">return null;
   }

   class="kw">public <U> U searchWithLong(Float2ObjectConcurrentHashMap.FloatObjLongFunction<? super V, ? class="kw">extends U> var1, long var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      Float2ObjectConcurrentHashMap.Node[] var4 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var5 = var4;
         Float2ObjectConcurrentHashMap.Node var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         int var9 = 0;
         int var10 = 0;
         int var11 = var4.length;
         int var12 = var4.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var13 = null;
            var13 = var6;
            if (var6 != null) {
               var13 = var13.next;
            }

            label81: {
               while (true) {
                  if (var13 != null) {
                     var6 = var13;
                     break label81;
                  }

                  if (var10 >= var11) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var14 = var5;
                  if (var5 == null) {
                     break;
                  }

                  int var16;
                  int var10000 = var16 = var14.length;
                  int var15 = var9;
                  if (var10000 <= var9 || var15 < 0) {
                     break;
                  }

                  if ((var13 = tabAt(var14, var15)) != null && var13.hash < 0) {
                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var5 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var13).nextTable;
                        var13 = null;
                        Float2ObjectConcurrentHashMap.TableStack var22 = var8;
                        if (var22 != null) {
                           var8 = var22.next;
                        } else {
                           var22 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var22.tab = var14;
                        var22.length = var16;
                        var22.index = var15;
                        var22.next = var7;
                        var7 = var22;
                        class="kw">continue;
                     }

                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var13 = ((Float2ObjectConcurrentHashMap.TreeBin)var13).first;
                     } else {
                        var13 = null;
                     }
                  }

                  if (var7 == null) {
                     if ((var9 = var15 + var12) >= var16) {
                        var9 = ++var10;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var17 = var7;
                        if (var7 != null) {
                           int var18 = var17.length;
                           if ((var9 += var17.length) >= var16) {
                              var16 = var18;
                              var9 = var17.index;
                              var5 = var17.tab;
                              var17.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var19 = var17.next;
                              var17.next = var8;
                              var7 = var19;
                              var8 = var17;
                              class="kw">continue;
                           }
                        }

                        if (var17 == null && (var9 += var12) >= var16) {
                           var9 = ++var10;
                        }
                        break;
                     }
                  }
               }

               var6 = null;
            }

            if (var13 == null) {
               break;
            }

            Object var21 = (U)var1.apply(var13.key, var13.val, var2);
            if (var21 != null) {
               class="kw">return var21;
            }
         }
      }

      class="kw">return null;
   }

   class="kw">public <U> U searchWithFloat(Float2ObjectConcurrentHashMap.FloatObjFloatFunction<? super V, ? class="kw">extends U> var1, float var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      Float2ObjectConcurrentHashMap.Node[] var3 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var4 = var3;
         Float2ObjectConcurrentHashMap.Node var5 = null;
         Float2ObjectConcurrentHashMap.TableStack var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         int var8 = 0;
         int var9 = 0;
         int var10 = var3.length;
         int var11 = var3.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var12 = null;
            var12 = var5;
            if (var5 != null) {
               var12 = var12.next;
            }

            label81: {
               while (true) {
                  if (var12 != null) {
                     var5 = var12;
                     break label81;
                  }

                  if (var9 >= var10) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var13 = var4;
                  if (var4 == null) {
                     break;
                  }

                  int var15;
                  int var10000 = var15 = var13.length;
                  int var14 = var8;
                  if (var10000 <= var8 || var14 < 0) {
                     break;
                  }

                  if ((var12 = tabAt(var13, var14)) != null && var12.hash < 0) {
                     if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var4 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var12).nextTable;
                        var12 = null;
                        Float2ObjectConcurrentHashMap.TableStack var21 = var7;
                        if (var21 != null) {
                           var7 = var21.next;
                        } else {
                           var21 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var21.tab = var13;
                        var21.length = var15;
                        var21.index = var14;
                        var21.next = var6;
                        var6 = var21;
                        class="kw">continue;
                     }

                     if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var12 = ((Float2ObjectConcurrentHashMap.TreeBin)var12).first;
                     } else {
                        var12 = null;
                     }
                  }

                  if (var6 == null) {
                     if ((var8 = var14 + var11) >= var15) {
                        var8 = ++var9;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var16 = var6;
                        if (var6 != null) {
                           int var17 = var16.length;
                           if ((var8 += var16.length) >= var15) {
                              var15 = var17;
                              var8 = var16.index;
                              var4 = var16.tab;
                              var16.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var18 = var16.next;
                              var16.next = var7;
                              var6 = var18;
                              var7 = var16;
                              class="kw">continue;
                           }
                        }

                        if (var16 == null && (var8 += var11) >= var15) {
                           var8 = ++var9;
                        }
                        break;
                     }
                  }
               }

               var5 = null;
            }

            if (var12 == null) {
               break;
            }

            Object var20 = (U)var1.apply(var12.key, var12.val, var2);
            if (var20 != null) {
               class="kw">return var20;
            }
         }
      }

      class="kw">return null;
   }

   class="kw">public <U> U searchWithDouble(Float2ObjectConcurrentHashMap.FloatObjDoubleFunction<? super V, ? class="kw">extends U> var1, double var2) {
      if (var1 == null) {
         throw new NullPointerException();
      }

      Float2ObjectConcurrentHashMap.Node[] var4 = this.table;
      if (this.table != null) {
         Float2ObjectConcurrentHashMap.Node[] var5 = var4;
         Float2ObjectConcurrentHashMap.Node var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         Float2ObjectConcurrentHashMap.TableStack var8 = null;
         int var9 = 0;
         int var10 = 0;
         int var11 = var4.length;
         int var12 = var4.length;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var13 = null;
            var13 = var6;
            if (var6 != null) {
               var13 = var13.next;
            }

            label81: {
               while (true) {
                  if (var13 != null) {
                     var6 = var13;
                     break label81;
                  }

                  if (var10 >= var11) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var14 = var5;
                  if (var5 == null) {
                     break;
                  }

                  int var16;
                  int var10000 = var16 = var14.length;
                  int var15 = var9;
                  if (var10000 <= var9 || var15 < 0) {
                     break;
                  }

                  if ((var13 = tabAt(var14, var15)) != null && var13.hash < 0) {
                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var5 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var13).nextTable;
                        var13 = null;
                        Float2ObjectConcurrentHashMap.TableStack var22 = var8;
                        if (var22 != null) {
                           var8 = var22.next;
                        } else {
                           var22 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var22.tab = var14;
                        var22.length = var16;
                        var22.index = var15;
                        var22.next = var7;
                        var7 = var22;
                        class="kw">continue;
                     }

                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var13 = ((Float2ObjectConcurrentHashMap.TreeBin)var13).first;
                     } else {
                        var13 = null;
                     }
                  }

                  if (var7 == null) {
                     if ((var9 = var15 + var12) >= var16) {
                        var9 = ++var10;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var17 = var7;
                        if (var7 != null) {
                           int var18 = var17.length;
                           if ((var9 += var17.length) >= var16) {
                              var16 = var18;
                              var9 = var17.index;
                              var5 = var17.tab;
                              var17.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var19 = var17.next;
                              var17.next = var8;
                              var7 = var19;
                              var8 = var17;
                              class="kw">continue;
                           }
                        }

                        if (var17 == null && (var9 += var12) >= var16) {
                           var9 = ++var10;
                        }
                        break;
                     }
                  }
               }

               var6 = null;
            }

            if (var13 == null) {
               break;
            }

            Object var21 = (U)var1.apply(var13.key, var13.val, var2);
            if (var21 != null) {
               class="kw">return var21;
            }
         }
      }

      class="kw">return null;
   }

   class="kw">public <U> U reduce(
      long var1, Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends U> var3, BiFunction<? super U, ? super U, ? class="kw">extends U> var4
   ) {
      if (var3 != null && var4 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceMappingsTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4).invoke();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public <U> U reduce(Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends U> var1, BiFunction<? super U, ? super U, ? class="kw">extends U> var2) {
      if (var1 != null && var2 != null) {
         Float2ObjectConcurrentHashMap.Node[] var3 = this.table;
         if (this.table == null) {
            class="kw">return null;
         }

         Float2ObjectConcurrentHashMap.Node[] var4 = var3;
         Float2ObjectConcurrentHashMap.Node var5 = null;
         Float2ObjectConcurrentHashMap.TableStack var6 = null;
         Float2ObjectConcurrentHashMap.TableStack var7 = null;
         int var8 = 0;
         int var9 = 0;
         int var10 = var3.length;
         int var11 = var3.length;
         Object var12 = null;

         while (true) {
            Float2ObjectConcurrentHashMap.Node var13 = null;
            var13 = var5;
            if (var5 != null) {
               var13 = var13.next;
            }

            label88: {
               while (true) {
                  if (var13 != null) {
                     var5 = var13;
                     break label88;
                  }

                  if (var9 >= var10) {
                     break;
                  }

                  Float2ObjectConcurrentHashMap.Node[] var14 = var4;
                  if (var4 == null) {
                     break;
                  }

                  int var16;
                  int var10000 = var16 = var14.length;
                  int var15 = var8;
                  if (var10000 <= var8 || var15 < 0) {
                     break;
                  }

                  if ((var13 = tabAt(var14, var15)) != null && var13.hash < 0) {
                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                        var4 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var13).nextTable;
                        var13 = null;
                        Float2ObjectConcurrentHashMap.TableStack var22 = var7;
                        if (var22 != null) {
                           var7 = var22.next;
                        } else {
                           var22 = new Float2ObjectConcurrentHashMap.TableStack<>();
                        }

                        var22.tab = var14;
                        var22.length = var16;
                        var22.index = var15;
                        var22.next = var6;
                        var6 = var22;
                        class="kw">continue;
                     }

                     if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                        var13 = ((Float2ObjectConcurrentHashMap.TreeBin)var13).first;
                     } else {
                        var13 = null;
                     }
                  }

                  if (var6 == null) {
                     if ((var8 = var15 + var11) >= var16) {
                        var8 = ++var9;
                     }
                  } else {
                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var17 = var6;
                        if (var6 != null) {
                           int var18 = var17.length;
                           if ((var8 += var17.length) >= var16) {
                              var16 = var18;
                              var8 = var17.index;
                              var4 = var17.tab;
                              var17.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var19 = var17.next;
                              var17.next = var7;
                              var6 = var19;
                              var7 = var17;
                              class="kw">continue;
                           }
                        }

                        if (var17 == null && (var8 += var11) >= var16) {
                           var8 = ++var9;
                        }
                        break;
                     }
                  }
               }

               var5 = null;
            }

            if (var13 == null) {
               class="kw">return var12;
            }

            Object var21;
            if ((var21 = (U)var1.apply(var13.key, var13.val)) != null) {
               var12 = var12 == null ? var21 : var2.apply(var12, var21);
            }
         }
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public double reduceToDouble(long var1, Float2ObjectConcurrentHashMap.ToDoubleFloatObjFunction<? super V> var3, double var4, DoubleBinaryOperator var6) {
      if (var3 != null && var6 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceMappingsToDoubleTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4, var6)
            .invoke0();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public long reduceToLong(long var1, Float2ObjectConcurrentHashMap.ToLongFloatObjFunction<? super V> var3, long var4, LongBinaryOperator var6) {
      if (var3 != null && var6 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceMappingsToLongTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4, var6).invoke0();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public int reduceToInt(long var1, Float2ObjectConcurrentHashMap.ToIntFloatObjFunction<? super V> var3, int var4, IntBinaryOperator var5) {
      if (var3 != null && var5 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceMappingsToIntTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4, var5).invoke0();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public void forEachKey(long var1, FloatConsumer var3) {
      if (var3 == null) {
         throw new NullPointerException();
      }

      new Float2ObjectConcurrentHashMap.ForEachKeyTask<>(null, this.batchFor(var1), 0, 0, this.table, var3).invoke();
   }

   class="kw">public <U> void forEachKey(long var1, Float2ObjectConcurrentHashMap.FloatFunction<? class="kw">extends U> var3, Consumer<? super U> var4) {
      if (var3 != null && var4 != null) {
         new Float2ObjectConcurrentHashMap.ForEachTransformedKeyTask<>(null, this.batchFor(var1), 0, 0, this.table, var3, var4).invoke();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public <U> U searchKeys(long var1, Float2ObjectConcurrentHashMap.FloatFunction<? class="kw">extends U> var3) {
      if (var3 == null) {
         throw new NullPointerException();
      } else {
         class="kw">return new Float2ObjectConcurrentHashMap.SearchKeysTask<>(null, this.batchFor(var1), 0, 0, this.table, var3, new AtomicReference()).invoke();
      }
   }

   class="kw">public float reduceKeys(long var1, Float2ObjectConcurrentHashMap.FloatReduceTaskOperator var3) {
      if (var3 == null) {
         throw new NullPointerException();
      } else {
         class="kw">return new Float2ObjectConcurrentHashMap.ReduceKeysTask<>(this.EMPTY, null, this.batchFor(var1), 0, 0, this.table, null, var3).invoke0();
      }
   }

   class="kw">public <U> U reduceKeys(long var1, Float2ObjectConcurrentHashMap.FloatFunction<? class="kw">extends U> var3, BiFunction<? super U, ? super U, ? class="kw">extends U> var4) {
      if (var3 != null && var4 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceKeysTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4).invoke();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public double reduceKeysToDouble(long var1, Float2ObjectConcurrentHashMap.FloatToDoubleFunction var3, double var4, DoubleBinaryOperator var6) {
      if (var3 != null && var6 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceKeysToDoubleTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4, var6).invoke0();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public long reduceKeysToLong(long var1, Float2ObjectConcurrentHashMap.FloatToLongFunction var3, long var4, LongBinaryOperator var6) {
      if (var3 != null && var6 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceKeysToLongTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4, var6).invoke0();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public int reduceKeysToInt(long var1, Float2ObjectConcurrentHashMap.FloatToIntFunction var3, int var4, IntBinaryOperator var5) {
      if (var3 != null && var5 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceKeysToIntTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4, var5).invoke0();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public void forEachValue(long var1, Consumer<? super V> var3) {
      if (var3 == null) {
         throw new NullPointerException();
      }

      new Float2ObjectConcurrentHashMap.ForEachValueTask<>(null, this.batchFor(var1), 0, 0, this.table, var3).invoke();
   }

   class="kw">public <U> void forEachValue(long var1, Function<? super V, ? class="kw">extends U> var3, Consumer<? super U> var4) {
      if (var3 != null && var4 != null) {
         new Float2ObjectConcurrentHashMap.ForEachTransformedValueTask<>(null, this.batchFor(var1), 0, 0, this.table, var3, var4).invoke();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public <U> U searchValues(long var1, Function<? super V, ? class="kw">extends U> var3) {
      if (var3 == null) {
         throw new NullPointerException();
      } else {
         class="kw">return new Float2ObjectConcurrentHashMap.SearchValuesTask<>(null, this.batchFor(var1), 0, 0, this.table, var3, new AtomicReference()).invoke();
      }
   }

   class="kw">public V reduceValues(long var1, BiFunction<? super V, ? super V, ? class="kw">extends V> var3) {
      if (var3 == null) {
         throw new NullPointerException();
      } else {
         class="kw">return new Float2ObjectConcurrentHashMap.ReduceValuesTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3).invoke();
      }
   }

   class="kw">public <U> U reduceValues(long var1, Function<? super V, ? class="kw">extends U> var3, BiFunction<? super U, ? super U, ? class="kw">extends U> var4) {
      if (var3 != null && var4 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceValuesTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4).invoke();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public double reduceValuesToDouble(long var1, ToDoubleFunction<? super V> var3, double var4, DoubleBinaryOperator var6) {
      if (var3 != null && var6 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceValuesToDoubleTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4, var6).invoke0();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public long reduceValuesToLong(long var1, ToLongFunction<? super V> var3, long var4, LongBinaryOperator var6) {
      if (var3 != null && var6 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceValuesToLongTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4, var6).invoke0();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public int reduceValuesToInt(long var1, ToIntFunction<? super V> var3, int var4, IntBinaryOperator var5) {
      if (var3 != null && var5 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceValuesToIntTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4, var5).invoke0();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public void forEachEntry(long var1, Consumer<? super Float2ObjectConcurrentHashMap.Entry<V>> var3) {
      if (var3 == null) {
         throw new NullPointerException();
      }

      new Float2ObjectConcurrentHashMap.ForEachEntryTask<>(null, this.batchFor(var1), 0, 0, this.table, var3).invoke();
   }

   class="kw">public <U> void forEachEntry(long var1, Function<Float2ObjectConcurrentHashMap.Entry<V>, ? class="kw">extends U> var3, Consumer<? super U> var4) {
      if (var3 != null && var4 != null) {
         new Float2ObjectConcurrentHashMap.ForEachTransformedEntryTask<>(null, this.batchFor(var1), 0, 0, this.table, var3, var4).invoke();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public <U> U searchEntries(long var1, Function<Float2ObjectConcurrentHashMap.Entry<V>, ? class="kw">extends U> var3) {
      if (var3 == null) {
         throw new NullPointerException();
      } else {
         class="kw">return new Float2ObjectConcurrentHashMap.SearchEntriesTask<>(null, this.batchFor(var1), 0, 0, this.table, var3, new AtomicReference()).invoke();
      }
   }

   class="kw">public Float2ObjectConcurrentHashMap.Entry<V> reduceEntries(
      long var1,
      BiFunction<Float2ObjectConcurrentHashMap.Entry<V>, Float2ObjectConcurrentHashMap.Entry<V>, ? class="kw">extends Float2ObjectConcurrentHashMap.Entry<V>> var3
   ) {
      if (var3 == null) {
         throw new NullPointerException();
      } else {
         class="kw">return new Float2ObjectConcurrentHashMap.ReduceEntriesTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3).invoke();
      }
   }

   class="kw">public <U> U reduceEntries(long var1, Function<Float2ObjectConcurrentHashMap.Entry<V>, ? class="kw">extends U> var3, BiFunction<? super U, ? super U, ? class="kw">extends U> var4) {
      if (var3 != null && var4 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceEntriesTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4).invoke();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public double reduceEntriesToDouble(long var1, ToDoubleFunction<Float2ObjectConcurrentHashMap.Entry<V>> var3, double var4, DoubleBinaryOperator var6) {
      if (var3 != null && var6 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceEntriesToDoubleTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4, var6).invoke0();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public long reduceEntriesToLong(long var1, ToLongFunction<Float2ObjectConcurrentHashMap.Entry<V>> var3, long var4, LongBinaryOperator var6) {
      if (var3 != null && var6 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceEntriesToLongTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4, var6).invoke0();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public int reduceEntriesToInt(long var1, ToIntFunction<Float2ObjectConcurrentHashMap.Entry<V>> var3, int var4, IntBinaryOperator var5) {
      if (var3 != null && var5 != null) {
         class="kw">return new Float2ObjectConcurrentHashMap.MapReduceEntriesToIntTask<>(null, this.batchFor(var1), 0, 0, this.table, null, var3, var4, var5).invoke0();
      } else {
         throw new NullPointerException();
      }
   }

   class="kw">public V valueMatching(Predicate<V> var1) {
      Float2ObjectConcurrentHashMap.Node var3 = null;
      Float2ObjectConcurrentHashMap.TableStack var4 = null;
      Float2ObjectConcurrentHashMap.TableStack var5 = null;
      int var6 = 0;
      int var7 = 0;
      Float2ObjectConcurrentHashMap.Node[] var2 = this.table;
      int var8 = this.table == null ? 0 : var2.length;
      int var9 = var8;
      int var10 = var8;
      boolean var11 = false;

      label80:
      while (var3 != null || !var11) {
         var11 |= true;
         Float2ObjectConcurrentHashMap.Node var12 = var3;
         if (var3 != null) {
            var12 = var12.next;
         }

         label76:
         while (var12 == null) {
            if (var7 < var9) {
               Float2ObjectConcurrentHashMap.Node[] var13 = var2;
               if (var2 != null) {
                  int var15;
                  int var10000 = var15 = var13.length;
                  int var14 = var6;
                  if (var10000 > var6 && var14 >= 0) {
                     if ((var12 = tabAt(var13, var14)) != null && var12.hash < 0) {
                        if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                           var2 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var12).nextTable;
                           var12 = null;
                           Float2ObjectConcurrentHashMap.TableStack var19 = var5;
                           if (var19 != null) {
                              var5 = var19.next;
                           } else {
                              var19 = new Float2ObjectConcurrentHashMap.TableStack<>();
                           }

                           var19.tab = var13;
                           var19.length = var15;
                           var19.index = var14;
                           var19.next = var4;
                           var4 = var19;
                           class="kw">continue;
                        }

                        if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                           var12 = ((Float2ObjectConcurrentHashMap.TreeBin)var12).first;
                        } else {
                           var12 = null;
                        }
                     }

                     if (var4 == null) {
                        if ((var6 = var14 + var10) >= var15) {
                           var6 = ++var7;
                        }
                        class="kw">continue;
                     }

                     while (true) {
                        Float2ObjectConcurrentHashMap.TableStack var16 = var4;
                        if (var4 != null) {
                           int var17 = var16.length;
                           if ((var6 += var16.length) >= var15) {
                              var15 = var17;
                              var6 = var16.index;
                              var2 = var16.tab;
                              var16.tab = null;
                              Float2ObjectConcurrentHashMap.TableStack var18 = var16.next;
                              var16.next = var5;
                              var4 = var18;
                              var5 = var16;
                              class="kw">continue;
                           }
                        }

                        if (var16 == null && (var6 += var10) >= var15) {
                           var6 = ++var7;
                        }
                        class="kw">continue label76;
                     }
                  }
               }
            }

            var3 = null;
            class="kw">continue label80;
         }

         var3 = var12;
         Float2ObjectConcurrentHashMap.Node var20 = var12;
         if (var1.test(var20.val)) {
            class="kw">return var12.val;
         }
      }

      class="kw">return null;
   }

   class="kw">static {
      try {
         Field var0 = Unsafe.class.getDeclaredField("theUnsafe");
         var0.setAccessible(true);
         U = (Unsafe)var0.get(null);
         Class var1 = Float2ObjectConcurrentHashMap.class;
         SIZECTL = U.objectFieldOffset(var1.getDeclaredField("sizeCtl"));
         TRANSFERINDEX = U.objectFieldOffset(var1.getDeclaredField("transferIndex"));
         BASECOUNT = U.objectFieldOffset(var1.getDeclaredField("baseCount"));
         CELLSBUSY = U.objectFieldOffset(var1.getDeclaredField("cellsBusy"));
         Class var2 = Float2ObjectConcurrentHashMap.CounterCell.class;
         CELLVALUE = U.objectFieldOffset(var2.getDeclaredField("value"));
         Class var3 = Float2ObjectConcurrentHashMap.Node[].class;
         ABASE = U.arrayBaseOffset(var3);
         int var4 = U.arrayIndexScale(var3);
         if ((var4 & var4 - 1) != 0) {
            throw new Error("data type scale not a power of two");
         }

         ASHIFT = 31 - Integer.numberOfLeadingZeros(var4);
      } catch (Exception var5) {
         throw new Error(var5);
      }
   }

   class="kw">protected class="kw">static class BaseIterator<V> class="kw">extends Float2ObjectConcurrentHashMap.Traverser<V> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap<V> map;
      class="kw">public Float2ObjectConcurrentHashMap.Node<V> lastReturned;

      class="kw">public BaseIterator(Float2ObjectConcurrentHashMap.Node<V>[] var1, int var2, int var3, int var4, Float2ObjectConcurrentHashMap<V> var5) {
         super(var1, var2, var3, var4);
         this.map = var5;
         this.advance();
      }

      class="kw">public class="kw">final boolean hasNext() {
         class="kw">return this.next != null;
      }

      class="kw">public class="kw">final boolean hasMoreElements() {
         class="kw">return this.next != null;
      }

      class="kw">public class="kw">final void remove() {
         Float2ObjectConcurrentHashMap.Node var1 = this.lastReturned;
         if (this.lastReturned == null) {
            throw new IllegalStateException();
         }

         this.lastReturned = null;
         this.map.replaceNode(var1.key, null, null);
      }
   }

   class="kw">protected class="kw">abstract class="kw">static class BulkTask<V, R> class="kw">extends CountedCompleter<R> {
      class="kw">public Float2ObjectConcurrentHashMap.Node<V>[] tab;
      class="kw">public Float2ObjectConcurrentHashMap.Node<V> next;
      class="kw">public Float2ObjectConcurrentHashMap.TableStack<V> stack;
      class="kw">public Float2ObjectConcurrentHashMap.TableStack<V> spare;
      class="kw">public int index;
      class="kw">public int baseIndex;
      class="kw">public int baseLimit;
      class="kw">public class="kw">final int baseSize;
      class="kw">public int batch;

      class="kw">protected BulkTask(Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1, int var2, int var3, int var4, Float2ObjectConcurrentHashMap.Node<V>[] var5) {
         super(var1);
         this.batch = var2;
         this.index = this.baseIndex = var3;
         if ((this.tab = var5) == null) {
            this.baseSize = this.baseLimit = 0;
         } else if (var1 == null) {
            this.baseSize = this.baseLimit = var5.length;
         } else {
            this.baseLimit = var4;
            this.baseSize = var1.baseSize;
         }
      }

      class="kw">protected class="kw">final Float2ObjectConcurrentHashMap.Node<V> advance() {
         Float2ObjectConcurrentHashMap.Node var1 = this.next;
         if (this.next != null) {
            var1 = var1.next;
         }

         while (true) {
            if (var1 != null) {
               class="kw">return this.next = var1;
            }

            if (this.baseIndex >= this.baseLimit) {
               break;
            }

            Float2ObjectConcurrentHashMap.Node[] var2 = this.tab;
            if (this.tab == null) {
               break;
            }

            int var4;
            int var10000 = var4 = var2.length;
            int var3 = this.index;
            if (var10000 <= this.index || var3 < 0) {
               break;
            }

            if ((var1 = Float2ObjectConcurrentHashMap.tabAt(var2, var3)) != null && var1.hash < 0) {
               if (var1 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                  this.tab = ((Float2ObjectConcurrentHashMap.ForwardingNode)var1).nextTable;
                  var1 = null;
                  this.pushState(var2, var3, var4);
                  class="kw">continue;
               }

               if (var1 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                  var1 = ((Float2ObjectConcurrentHashMap.TreeBin)var1).first;
               } else {
                  var1 = null;
               }
            }

            if (this.stack != null) {
               this.recoverState(var4);
            } else if ((this.index = var3 + this.baseSize) >= var4) {
               this.index = ++this.baseIndex;
            }
         }

         class="kw">return this.next = null;
      }

      class="kw">protected void pushState(Float2ObjectConcurrentHashMap.Node<V>[] var1, int var2, int var3) {
         Float2ObjectConcurrentHashMap.TableStack var4 = this.spare;
         if (var4 != null) {
            this.spare = var4.next;
         } else {
            var4 = new Float2ObjectConcurrentHashMap.TableStack<>();
         }

         var4.tab = var1;
         var4.length = var3;
         var4.index = var2;
         var4.next = this.stack;
         this.stack = var4;
      }

      class="kw">protected void recoverState(int var1) {
         while (true) {
            Float2ObjectConcurrentHashMap.TableStack var2 = this.stack;
            if (this.stack != null) {
               int var3 = var2.length;
               if ((this.index = this.index + var2.length) >= var1) {
                  var1 = var3;
                  this.index = var2.index;
                  this.tab = var2.tab;
                  var2.tab = null;
                  Float2ObjectConcurrentHashMap.TableStack var4 = var2.next;
                  var2.next = this.spare;
                  this.stack = var4;
                  this.spare = var2;
                  class="kw">continue;
               }
            }

            if (var2 == null && (this.index = this.index + this.baseSize) >= var1) {
               this.index = ++this.baseIndex;
            }

            class="kw">return;
         }
      }
   }

   class="kw">protected class="kw">abstract class="kw">static class CollectionView<K, E> class="kw">implements ObjectCollection<E>, Serializable {
      class="kw">public class="kw">static class="kw">final long serialVersionUID = 7249069246763182397L;
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap<K> map;
      class="kw">protected class="kw">static class="kw">final String oomeMsg = "Required array size too large";

      class="kw">public CollectionView(Float2ObjectConcurrentHashMap<K> var1) {
         this.map = var1;
      }

      class="kw">public Float2ObjectConcurrentHashMap<K> getMap() {
         class="kw">return this.map;
      }

      class="kw">public class="kw">final void clear() {
         this.map.clear();
      }

      class="kw">public class="kw">final int size() {
         class="kw">return this.map.size();
      }

      class="kw">public class="kw">final boolean isEmpty() {
         class="kw">return this.map.isEmpty();
      }

      class="kw">public class="kw">abstract ObjectIterator<E> iterator();

      class="kw">public class="kw">abstract boolean contains(Object var1);

      class="kw">public class="kw">abstract boolean remove(Object var1);

      class="kw">public class="kw">final Object[] toArray() {
         long var1 = this.map.mappingCount();
         if (var1 > 2147483639L) {
            throw new OutOfMemoryError("Required array size too large");
         }

         int var3 = (int)var1;
         Object[] var4 = new Object[var3];
         int var5 = 0;
         ObjectIterator var6 = this.iterator();

         while (var6.hasNext()) {
            Object var7 = (E)var6.next();
            if (var5 == var3) {
               if (var3 >= 2147483639) {
                  throw new OutOfMemoryError("Required array size too large");
               }

               if (var3 >= 1073741819) {
                  var3 = 2147483639;
               } else {
                  var3 += (var3 >>> 1) + 1;
               }

               var4 = Arrays.copyOf(var4, var3);
            }

            var4[var5++] = var7;
         }

         class="kw">return var5 == var3 ? var4 : Arrays.copyOf(var4, var5);
      }

      class="kw">public class="kw">final <T> T[] toArray(T[] var1) {
         long var2 = this.map.mappingCount();
         if (var2 > 2147483639L) {
            throw new OutOfMemoryError("Required array size too large");
         }

         int var4 = (int)var2;
         Object[] var5 = (T[])(var1.length >= var4 ? var1 : (Object[])Array.newInstance(var1.getClass().getComponentType(), var4));
         int var6 = var5.length;
         int var7 = 0;
         ObjectIterator var8 = this.iterator();

         while (var8.hasNext()) {
            Object var9 = (E)var8.next();
            if (var7 == var6) {
               if (var6 >= 2147483639) {
                  throw new OutOfMemoryError("Required array size too large");
               }

               if (var6 >= 1073741819) {
                  var6 = 2147483639;
               } else {
                  var6 += (var6 >>> 1) + 1;
               }

               var5 = (T[])Arrays.copyOf(var5, var6);
            }

            var5[var7++] = (T)var9;
         }

         if (var1 == var5 && var7 < var6) {
            var5[var7] = null;
            class="kw">return var5;
         } else {
            class="kw">return (T[])(var7 == var6 ? var5 : Arrays.copyOf(var5, var7));
         }
      }

      @Override
      class="kw">public class="kw">final String toString() {
         StringBuilder var1 = new StringBuilder();
         var1.append('[');
         Iterator var2 = this.iterator();
         if (var2.hasNext()) {
            while (true) {
               Object var3 = var2.next();
               var1.append(var3 == this ? "(this Collection)" : var3);
               if (!var2.hasNext()) {
                  break;
               }

               var1.append(',').append(' ');
            }
         }

         class="kw">return var1.append(']').toString();
      }

      class="kw">public class="kw">final boolean containsAll(Collection<?> var1) {
         if (var1 != this) {
            for (Object var3 : var1) {
               if (var3 == null || !this.contains(var3)) {
                  class="kw">return false;
               }
            }
         }

         class="kw">return true;
      }

      class="kw">public class="kw">final boolean removeAll(Collection<?> var1) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         boolean var2 = false;
         Iterator var3 = this.iterator();

         while (var3.hasNext()) {
            if (var1.contains(var3.next())) {
               var3.remove();
               var2 = true;
            }
         }

         class="kw">return var2;
      }

      class="kw">public class="kw">final boolean retainAll(Collection<?> var1) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         boolean var2 = false;
         Iterator var3 = this.iterator();

         while (var3.hasNext()) {
            if (!var1.contains(var3.next())) {
               var3.remove();
               var2 = true;
            }
         }

         class="kw">return var2;
      }
   }

   class="kw">protected class="kw">static class="kw">final class CounterCell {
      class="kw">public class="kw">volatile long value;

      class="kw">public CounterCell(long var1) {
         this.value = var1;
      }
   }

   class="kw">protected class="kw">abstract class="kw">static class DoubleReturningBulkTask<V> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Double> {
      class="kw">public double result;

      class="kw">public DoubleReturningBulkTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1, int var2, int var3, int var4, Float2ObjectConcurrentHashMap.Node<V>[] var5
      ) {
         super(var1, var2, var3, var4, var5);
      }

      class="kw">protected double invoke0() {
         this.quietlyInvoke();
         Throwable var2 = this.getException();
         if (var2 != null) {
            throw SneakyThrow.sneakyThrow(var2);
         } else {
            class="kw">return this.result;
         }
      }
   }

   class="kw">public class="kw">interface Entry<V> class="kw">extends it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V> {
      boolean isEmpty();

      @Deprecated
      Float getKey();

      float getFloatKey();

      V getValue();

      @Override
      int hashCode();

      @Override
      String toString();

      @Override
      boolean equals(Object var1);

      V setValue(V var1);
   }

   class="kw">protected class="kw">static class="kw">final class EntryIterator<V>
      class="kw">extends Float2ObjectConcurrentHashMap.BaseIterator<V>
      class="kw">implements ObjectIterator<it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V>> {
      class="kw">public EntryIterator(Float2ObjectConcurrentHashMap.Node<V>[] var1, int var2, int var3, int var4, Float2ObjectConcurrentHashMap<V> var5) {
         super(var1, var2, var3, var4, var5);
      }

      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.Entry<V> next() {
         Float2ObjectConcurrentHashMap.Node var1 = this.next;
         if (this.next == null) {
            throw new NoSuchElementException();
         }

         float var2 = var1.key;
         Object var3 = var1.val;
         this.lastReturned = var1;
         this.advance();
         class="kw">return new Float2ObjectConcurrentHashMap.MapEntry<>(var1.isEmpty(), var2, var3, this.map);
      }
   }

   class="kw">protected class="kw">static class="kw">final class EntrySetView<V>
      class="kw">extends Float2ObjectConcurrentHashMap.CollectionView<V, it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V>>
      class="kw">implements ObjectSet<it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V>>,
      Serializable {
      class="kw">public class="kw">static class="kw">final long serialVersionUID = 2249069246763182397L;

      class="kw">public EntrySetView(Float2ObjectConcurrentHashMap<V> var1) {
         super(var1);
      }

      @Override
      class="kw">public boolean contains(Object var1) {
         if (var1 class="kw">instanceof it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry) {
            it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry var5;
            float var2 = (var5 = (it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<?>)var1).getFloatKey();
            if (!((Float2ObjectConcurrentHashMap.Entry)var1).isEmpty()) {
               Object var3;
               Object var4;
               class="kw">return (var4 = this.map.get(var2)) != null && (var3 = var5.getValue()) != null && (var3 == var4 || var3.equals(var4));
            }
         }

         class="kw">return false;
      }

      @Override
      class="kw">public boolean remove(Object var1) {
         if (var1 class="kw">instanceof it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry) {
            it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry var4;
            float var2 = (var4 = (it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<?>)var1).getFloatKey();
            if (!((Float2ObjectConcurrentHashMap.Entry)var1).isEmpty()) {
               Object var3;
               class="kw">return (var3 = var4.getValue()) != null && this.map.remove(var2, var3);
            }
         }

         class="kw">return false;
      }

      @Override
      class="kw">public ObjectIterator<it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V>> iterator() {
         Float2ObjectConcurrentHashMap var1 = this.map;
         Float2ObjectConcurrentHashMap.Node[] var2 = var1.table;
         int var3 = var1.table == null ? 0 : var2.length;
         class="kw">return new Float2ObjectConcurrentHashMap.EntryIterator<>(var2, var3, 0, var3, var1);
      }

      class="kw">public boolean add(it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V> var1) {
         class="kw">return this.map.putVal(var1.getFloatKey(), (V)var1.getValue(), false) == null;
      }

      class="kw">public boolean addAll(Collection<? class="kw">extends it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V>> var1) {
         boolean var2 = false;

         for (it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry var4 : var1) {
            if (this.add(var4)) {
               var2 = true;
            }
         }

         class="kw">return var2;
      }

      @Override
      class="kw">public class="kw">final int hashCode() {
         int var1 = 0;
         Float2ObjectConcurrentHashMap.Node[] var2 = this.map.table;
         if (this.map.table != null) {
            Float2ObjectConcurrentHashMap.Traverser var3 = new Float2ObjectConcurrentHashMap.Traverser<>(var2, var2.length, 0, var2.length);

            Float2ObjectConcurrentHashMap.Node var4;
            while ((var4 = var3.advance()) != null) {
               var1 += var4.hashCode();
            }
         }

         class="kw">return var1;
      }

      @Override
      class="kw">public class="kw">final boolean equals(Object var1) {
         Set var2;
         class="kw">return var1 class="kw">instanceof Set && ((var2 = (Set<?>)var1) == this || this.containsAll(var2) && var2.containsAll(this));
      }

      class="kw">public ObjectSpliterator<it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V>> spliterator() {
         Float2ObjectConcurrentHashMap var2 = this.map;
         long var3 = var2.sumCount();
         Float2ObjectConcurrentHashMap.Node[] var1 = var2.table;
         int var5 = var2.table == null ? 0 : var1.length;
         class="kw">return new Float2ObjectConcurrentHashMap.EntrySpliterator<>(var1, var5, 0, var5, var3 < 0L ? 0L : var3, var2);
      }

      class="kw">public void forEach(Consumer<? super it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V>> var1) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node[] var2 = this.map.table;
         if (this.map.table != null) {
            Float2ObjectConcurrentHashMap.Traverser var3 = new Float2ObjectConcurrentHashMap.Traverser<>(var2, var2.length, 0, var2.length);

            Float2ObjectConcurrentHashMap.Node var4;
            while ((var4 = var3.advance()) != null) {
               var1.accept(new Float2ObjectConcurrentHashMap.MapEntry<>(var4.isEmpty(), var4.key, var4.val, this.map));
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class EntrySpliterator<V>
      class="kw">extends Float2ObjectConcurrentHashMap.Traverser<V>
      class="kw">implements ObjectSpliterator<it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V>> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap<V> map;
      class="kw">public long est;

      class="kw">public EntrySpliterator(Float2ObjectConcurrentHashMap.Node<V>[] var1, int var2, int var3, int var4, long var5, Float2ObjectConcurrentHashMap<V> var7) {
         super(var1, var2, var3, var4);
         this.map = var7;
         this.est = var5;
      }

      class="kw">public ObjectSpliterator<it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V>> trySplit() {
         int var1 = this.baseIndex;
         int var2 = this.baseLimit;
         int var3;
         class="kw">return (var3 = this.baseIndex + this.baseLimit >>> 1) <= var1
            ? null
            : new Float2ObjectConcurrentHashMap.EntrySpliterator<>(this.tab, this.baseSize, this.baseLimit = var3, var2, this.est >>>= 1, this.map);
      }

      class="kw">public void forEachRemaining(Consumer<? super it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V>> var1) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node var2;
         while ((var2 = this.advance()) != null) {
            var1.accept(new Float2ObjectConcurrentHashMap.MapEntry<>(var2.isEmpty(), var2.key, var2.val, this.map));
         }
      }

      class="kw">public boolean tryAdvance(Consumer<? super it.unimi.dsi.fastutil.floats.Float2ObjectMap.Entry<V>> var1) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node var2;
         if ((var2 = this.advance()) == null) {
            class="kw">return false;
         }

         var1.accept(new Float2ObjectConcurrentHashMap.MapEntry<>(var2.isEmpty(), var2.key, var2.val, this.map));
         class="kw">return true;
      }

      class="kw">public long estimateSize() {
         class="kw">return this.est;
      }

      class="kw">public int characteristics() {
         class="kw">return 4353;
      }
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatBiObjByteConsumer<V, X> {
      void accept(float var1, V var2, byte var3, X var4);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatBiObjConsumer<V, X> {
      void accept(float var1, V var2, X var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatBiObjDoubleConsumer<V, X> {
      void accept(float var1, V var2, double var3, X var5);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatBiObjFloatConsumer<V, X> {
      void accept(float var1, V var2, float var3, X var4);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatBiObjFunction<V, X, J> {
      J apply(float var1, V var2, X var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatBiObjIntConsumer<V, X> {
      void accept(float var1, V var2, int var3, X var4);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatBiObjLongConsumer<V, X> {
      void accept(float var1, V var2, long var3, X var5);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatBiObjShortConsumer<V, X> {
      void accept(float var1, V var2, short var3, X var4);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatFunction<R> {
      R apply(float var1);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjByteConsumer<V> {
      void accept(float var1, V var2, byte var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjByteFunction<V, J> {
      J apply(float var1, V var2, byte var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjConsumer<V> {
      void accept(float var1, V var2);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjDoubleConsumer<V> {
      void accept(float var1, V var2, double var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjDoubleFunction<V, J> {
      J apply(float var1, V var2, double var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjFloatConsumer<V> {
      void accept(float var1, V var2, float var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjFloatFunction<V, J> {
      J apply(float var1, V var2, float var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjFunction<V, J> {
      J apply(float var1, V var2);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjIntConsumer<V> {
      void accept(float var1, V var2, int var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjIntFunction<V, J> {
      J apply(float var1, V var2, int var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjLongConsumer<V> {
      void accept(float var1, V var2, long var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjLongFunction<V, J> {
      J apply(float var1, V var2, long var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjShortConsumer<V> {
      void accept(float var1, V var2, short var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatObjShortFunction<V, J> {
      J apply(float var1, V var2, short var3);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatReduceTaskOperator {
      float reduce(float var1, float var2, float var3);
   }

   class="kw">protected class="kw">abstract class="kw">static class FloatReturningBulkTask2<V> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Float> {
      class="kw">public float result;

      class="kw">public FloatReturningBulkTask2(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1, int var2, int var3, int var4, Float2ObjectConcurrentHashMap.Node<V>[] var5
      ) {
         super(var1, var2, var3, var4, var5);
      }

      class="kw">protected float invoke0() {
         this.quietlyInvoke();
         Throwable var2 = this.getException();
         if (var2 != null) {
            throw SneakyThrow.sneakyThrow(var2);
         } else {
            class="kw">return this.result;
         }
      }
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatToDoubleFunction {
      double applyAsDouble(float var1);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatToIntFunction {
      int applyAsInt(float var1);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatToLongFunction {
      long applyAsLong(float var1);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface FloatTriObjConsumer<V, X, Y> {
      void accept(float var1, V var2, X var3, Y var4);
   }

   class="kw">protected class="kw">static class="kw">final class ForEachEntryTask<V> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Void> {
      class="kw">public class="kw">final Consumer<? super Float2ObjectConcurrentHashMap.Entry<V>> action;

      class="kw">public ForEachEntryTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Consumer<? super Float2ObjectConcurrentHashMap.Entry<V>> var6
      ) {
         super(var1, var2, var3, var4, var5);
         this.action = var6;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Consumer var1 = this.action;
         if (this.action != null) {
            int var2 = this.baseIndex;

            while (this.batch > 0) {
               int var3 = this.baseLimit;
               int var4;
               if ((var4 = this.baseLimit + var2 >>> 1) <= var2) {
                  break;
               }

               this.addToPendingCount(1);
               new Float2ObjectConcurrentHashMap.ForEachEntryTask<>(this, this.batch >>>= 1, this.baseLimit = var4, var3, this.tab, var1).fork();
            }

            while ((var5 = this.advance()) != null) {
               var1.accept(var5);
            }

            this.propagateCompletion();
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class ForEachKeyTask<V> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Void> {
      class="kw">public class="kw">final FloatConsumer action;

      class="kw">public ForEachKeyTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1, int var2, int var3, int var4, Float2ObjectConcurrentHashMap.Node<V>[] var5, FloatConsumer var6
      ) {
         super(var1, var2, var3, var4, var5);
         this.action = var6;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         FloatConsumer var1 = this.action;
         if (this.action != null) {
            int var2 = this.baseIndex;

            while (this.batch > 0) {
               int var3 = this.baseLimit;
               int var4;
               if ((var4 = this.baseLimit + var2 >>> 1) <= var2) {
                  break;
               }

               this.addToPendingCount(1);
               new Float2ObjectConcurrentHashMap.ForEachKeyTask<>(this, this.batch >>>= 1, this.baseLimit = var4, var3, this.tab, var1).fork();
            }

            while ((var5 = this.advance()) != null) {
               var1.accept(var5.key);
            }

            this.propagateCompletion();
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class ForEachMappingTask<V> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Void> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.FloatObjConsumer<? super V> action;

      class="kw">public ForEachMappingTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.FloatObjConsumer<? super V> var6
      ) {
         super(var1, var2, var3, var4, var5);
         this.action = var6;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.FloatObjConsumer var1 = this.action;
         if (this.action != null) {
            int var2 = this.baseIndex;

            while (this.batch > 0) {
               int var3 = this.baseLimit;
               int var4;
               if ((var4 = this.baseLimit + var2 >>> 1) <= var2) {
                  break;
               }

               this.addToPendingCount(1);
               new Float2ObjectConcurrentHashMap.ForEachMappingTask<>(this, this.batch >>>= 1, this.baseLimit = var4, var3, this.tab, var1).fork();
            }

            while ((var5 = this.advance()) != null) {
               var1.accept(var5.key, var5.val);
            }

            this.propagateCompletion();
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class ForEachTransformedEntryTask<V, U> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Void> {
      class="kw">public class="kw">final Function<Float2ObjectConcurrentHashMap.Entry<V>, ? class="kw">extends U> transformer;
      class="kw">public class="kw">final Consumer<? super U> action;

      class="kw">public ForEachTransformedEntryTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Function<Float2ObjectConcurrentHashMap.Entry<V>, ? class="kw">extends U> var6,
         Consumer<? super U> var7
      ) {
         super(var1, var2, var3, var4, var5);
         this.transformer = var6;
         this.action = var7;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Function var1 = this.transformer;
         if (this.transformer != null) {
            Consumer var2 = this.action;
            if (this.action != null) {
               int var3 = this.baseIndex;

               while (this.batch > 0) {
                  int var4 = this.baseLimit;
                  int var5;
                  if ((var5 = this.baseLimit + var3 >>> 1) <= var3) {
                     break;
                  }

                  this.addToPendingCount(1);
                  new Float2ObjectConcurrentHashMap.ForEachTransformedEntryTask<>(this, this.batch >>>= 1, this.baseLimit = var5, var4, this.tab, var1, var2)
                     .fork();
               }

               while ((var6 = this.advance()) != null) {
                  Object var7;
                  if ((var7 = (U)var1.apply(var6)) != null) {
                     var2.accept(var7);
                  }
               }

               this.propagateCompletion();
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class ForEachTransformedKeyTask<V, U> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Void> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.FloatFunction<? class="kw">extends U> transformer;
      class="kw">public class="kw">final Consumer<? super U> action;

      class="kw">public ForEachTransformedKeyTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.FloatFunction<? class="kw">extends U> var6,
         Consumer<? super U> var7
      ) {
         super(var1, var2, var3, var4, var5);
         this.transformer = var6;
         this.action = var7;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.FloatFunction var1 = this.transformer;
         if (this.transformer != null) {
            Consumer var2 = this.action;
            if (this.action != null) {
               int var3 = this.baseIndex;

               while (this.batch > 0) {
                  int var4 = this.baseLimit;
                  int var5;
                  if ((var5 = this.baseLimit + var3 >>> 1) <= var3) {
                     break;
                  }

                  this.addToPendingCount(1);
                  new Float2ObjectConcurrentHashMap.ForEachTransformedKeyTask<>(this, this.batch >>>= 1, this.baseLimit = var5, var4, this.tab, var1, var2)
                     .fork();
               }

               while ((var6 = this.advance()) != null) {
                  Object var7;
                  if ((var7 = (U)var1.apply(var6.key)) != null) {
                     var2.accept(var7);
                  }
               }

               this.propagateCompletion();
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class ForEachTransformedMappingTask<V, U> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Void> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends U> transformer;
      class="kw">public class="kw">final Consumer<? super U> action;

      class="kw">public ForEachTransformedMappingTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends U> var6,
         Consumer<? super U> var7
      ) {
         super(var1, var2, var3, var4, var5);
         this.transformer = var6;
         this.action = var7;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.FloatObjFunction var1 = this.transformer;
         if (this.transformer != null) {
            Consumer var2 = this.action;
            if (this.action != null) {
               int var3 = this.baseIndex;

               while (this.batch > 0) {
                  int var4 = this.baseLimit;
                  int var5;
                  if ((var5 = this.baseLimit + var3 >>> 1) <= var3) {
                     break;
                  }

                  this.addToPendingCount(1);
                  new Float2ObjectConcurrentHashMap.ForEachTransformedMappingTask<>(this, this.batch >>>= 1, this.baseLimit = var5, var4, this.tab, var1, var2)
                     .fork();
               }

               while ((var6 = this.advance()) != null) {
                  Object var7;
                  if ((var7 = (U)var1.apply(var6.key, var6.val)) != null) {
                     var2.accept(var7);
                  }
               }

               this.propagateCompletion();
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class ForEachTransformedValueTask<V, U> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Void> {
      class="kw">public class="kw">final Function<? super V, ? class="kw">extends U> transformer;
      class="kw">public class="kw">final Consumer<? super U> action;

      class="kw">public ForEachTransformedValueTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Function<? super V, ? class="kw">extends U> var6,
         Consumer<? super U> var7
      ) {
         super(var1, var2, var3, var4, var5);
         this.transformer = var6;
         this.action = var7;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Function var1 = this.transformer;
         if (this.transformer != null) {
            Consumer var2 = this.action;
            if (this.action != null) {
               int var3 = this.baseIndex;

               while (this.batch > 0) {
                  int var4 = this.baseLimit;
                  int var5;
                  if ((var5 = this.baseLimit + var3 >>> 1) <= var3) {
                     break;
                  }

                  this.addToPendingCount(1);
                  new Float2ObjectConcurrentHashMap.ForEachTransformedValueTask<>(this, this.batch >>>= 1, this.baseLimit = var5, var4, this.tab, var1, var2)
                     .fork();
               }

               while ((var6 = this.advance()) != null) {
                  Object var7;
                  if ((var7 = (U)var1.apply(var6.val)) != null) {
                     var2.accept(var7);
                  }
               }

               this.propagateCompletion();
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class ForEachValueTask<V> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Void> {
      class="kw">public class="kw">final Consumer<? super V> action;

      class="kw">public ForEachValueTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Consumer<? super V> var6
      ) {
         super(var1, var2, var3, var4, var5);
         this.action = var6;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Consumer var1 = this.action;
         if (this.action != null) {
            int var2 = this.baseIndex;

            while (this.batch > 0) {
               int var3 = this.baseLimit;
               int var4;
               if ((var4 = this.baseLimit + var2 >>> 1) <= var2) {
                  break;
               }

               this.addToPendingCount(1);
               new Float2ObjectConcurrentHashMap.ForEachValueTask<>(this, this.batch >>>= 1, this.baseLimit = var4, var3, this.tab, var1).fork();
            }

            while ((var5 = this.advance()) != null) {
               var1.accept(var5.val);
            }

            this.propagateCompletion();
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class ForwardingNode<V> class="kw">extends Float2ObjectConcurrentHashMap.Node<V> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.Node<V>[] nextTable;

      class="kw">public ForwardingNode(float var1, Float2ObjectConcurrentHashMap.Node<V>[] var2) {
         super(var1, -1, var1, null, null);
         this.nextTable = var2;
      }

      @Override
      class="kw">protected Float2ObjectConcurrentHashMap.Node<V> find(int var1, float var2) {
         Float2ObjectConcurrentHashMap.Node[] var3 = this.nextTable;

         Float2ObjectConcurrentHashMap.Node var4;
         int var5;
         label41:
         while (var2 != this.EMPTY && var3 != null && (var5 = var3.length) != 0 && (var4 = Float2ObjectConcurrentHashMap.tabAt(var3, var5 - 1 & var1)) != null) {
            do {
               int var6 = var4.hash;
               if (var4.hash == var1) {
                  float var7 = var4.key;
                  if (var4.key == var2 || var7 != this.EMPTY && var2 == var7) {
                     class="kw">return var4;
                  }
               }

               if (var6 < 0) {
                  if (!(var4 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode)) {
                     class="kw">return var4.find(var1, var2);
                  }

                  var3 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var4).nextTable;
                  class="kw">continue label41;
               }
            } while ((var4 = var4.next) != null);

            class="kw">return null;
         }

         class="kw">return null;
      }
   }

   class="kw">protected class="kw">abstract class="kw">static class IntReturningBulkTask<V> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Integer> {
      class="kw">public int result;

      class="kw">public IntReturningBulkTask(Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1, int var2, int var3, int var4, Float2ObjectConcurrentHashMap.Node<V>[] var5) {
         super(var1, var2, var3, var4, var5);
      }

      class="kw">protected int invoke0() {
         this.quietlyInvoke();
         Throwable var2 = this.getException();
         if (var2 != null) {
            throw SneakyThrow.sneakyThrow(var2);
         } else {
            class="kw">return this.result;
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class KeyIterator<V> class="kw">implements FloatIterator {
      class="kw">public Float2ObjectConcurrentHashMap.Node<V>[] tab;
      class="kw">public Float2ObjectConcurrentHashMap.Node<V> next;
      class="kw">public Float2ObjectConcurrentHashMap.TableStack<V> stack;
      class="kw">public Float2ObjectConcurrentHashMap.TableStack<V> spare;
      class="kw">public int index;
      class="kw">public int baseIndex;
      class="kw">public int baseLimit;
      class="kw">public class="kw">final int baseSize;
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap<V> map;
      class="kw">public Float2ObjectConcurrentHashMap.Node<V> lastReturned;

      class="kw">public KeyIterator(Float2ObjectConcurrentHashMap.Node<V>[] var1, int var2, int var3, int var4, Float2ObjectConcurrentHashMap<V> var5) {
         this.tab = var1;
         this.baseSize = var2;
         this.baseIndex = this.index = var3;
         this.baseLimit = var4;
         this.next = null;
         this.map = var5;
         this.advance();
      }

      class="kw">protected class="kw">final Float2ObjectConcurrentHashMap.Node<V> advance() {
         Float2ObjectConcurrentHashMap.Node var1 = this.next;
         if (this.next != null) {
            var1 = var1.next;
         }

         while (true) {
            if (var1 != null) {
               class="kw">return this.next = var1;
            }

            if (this.baseIndex >= this.baseLimit) {
               break;
            }

            Float2ObjectConcurrentHashMap.Node[] var2 = this.tab;
            if (this.tab == null) {
               break;
            }

            int var4;
            int var10000 = var4 = var2.length;
            int var3 = this.index;
            if (var10000 <= this.index || var3 < 0) {
               break;
            }

            if ((var1 = Float2ObjectConcurrentHashMap.tabAt(var2, var3)) != null && var1.hash < 0) {
               if (var1 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                  this.tab = ((Float2ObjectConcurrentHashMap.ForwardingNode)var1).nextTable;
                  var1 = null;
                  this.pushState(var2, var3, var4);
                  class="kw">continue;
               }

               if (var1 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                  var1 = ((Float2ObjectConcurrentHashMap.TreeBin)var1).first;
               } else {
                  var1 = null;
               }
            }

            if (this.stack != null) {
               this.recoverState(var4);
            } else if ((this.index = var3 + this.baseSize) >= var4) {
               this.index = ++this.baseIndex;
            }
         }

         class="kw">return this.next = null;
      }

      class="kw">protected void pushState(Float2ObjectConcurrentHashMap.Node<V>[] var1, int var2, int var3) {
         Float2ObjectConcurrentHashMap.TableStack var4 = this.spare;
         if (var4 != null) {
            this.spare = var4.next;
         } else {
            var4 = new Float2ObjectConcurrentHashMap.TableStack<>();
         }

         var4.tab = var1;
         var4.length = var3;
         var4.index = var2;
         var4.next = this.stack;
         this.stack = var4;
      }

      class="kw">protected void recoverState(int var1) {
         while (true) {
            Float2ObjectConcurrentHashMap.TableStack var2 = this.stack;
            if (this.stack != null) {
               int var3 = var2.length;
               if ((this.index = this.index + var2.length) >= var1) {
                  var1 = var3;
                  this.index = var2.index;
                  this.tab = var2.tab;
                  var2.tab = null;
                  Float2ObjectConcurrentHashMap.TableStack var4 = var2.next;
                  var2.next = this.spare;
                  this.stack = var4;
                  this.spare = var2;
                  class="kw">continue;
               }
            }

            if (var2 == null && (this.index = this.index + this.baseSize) >= var1) {
               this.index = ++this.baseIndex;
            }

            class="kw">return;
         }
      }

      class="kw">public class="kw">final boolean hasNext() {
         class="kw">return this.next != null;
      }

      class="kw">public class="kw">final boolean hasMoreElements() {
         class="kw">return this.next != null;
      }

      class="kw">public class="kw">final void remove() {
         Float2ObjectConcurrentHashMap.Node var1 = this.lastReturned;
         if (this.lastReturned == null) {
            throw new IllegalStateException();
         }

         this.lastReturned = null;
         this.map.replaceNode(var1.key, null, null);
      }

      class="kw">public class="kw">final float nextFloat() {
         Float2ObjectConcurrentHashMap.Node var1 = this.next;
         if (this.next == null) {
            throw new NoSuchElementException();
         }

         float var2 = var1.key;
         this.lastReturned = var1;
         this.advance();
         class="kw">return var2;
      }
   }

   class="kw">public class="kw">static class KeySetView<V> class="kw">implements FloatSet {
      class="kw">public class="kw">static class="kw">final long serialVersionUID = 7249069246763182397L;
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap<V> map;
      class="kw">public class="kw">final V value;

      class="kw">public KeySetView(Float2ObjectConcurrentHashMap<V> var1, V var2) {
         this.map = var1;
         this.value = var2;
      }

      class="kw">public V getMappedValue() {
         class="kw">return this.value;
      }

      class="kw">public boolean contains(float var1) {
         class="kw">return this.map.containsKey(var1);
      }

      class="kw">public boolean remove(float var1) {
         class="kw">return this.map.remove(var1) != null;
      }

      class="kw">public FloatIterator iterator() {
         Float2ObjectConcurrentHashMap var2 = this.map;
         Float2ObjectConcurrentHashMap.Node[] var1 = var2.table;
         int var3 = var2.table == null ? 0 : var1.length;
         class="kw">return new Float2ObjectConcurrentHashMap.KeyIterator<>(var1, var3, 0, var3, var2);
      }

      class="kw">public boolean add(float var1) {
         Object var2 = this.value;
         if (this.value == null) {
            throw new UnsupportedOperationException();
         } else {
            class="kw">return this.map.putVal(var1, var2, true) == null;
         }
      }

      class="kw">public boolean addAll(FloatCollection var1) {
         boolean var2 = false;
         Object var3 = this.value;
         if (this.value == null) {
            throw new UnsupportedOperationException();
         }

         FloatIterator var4 = var1.iterator();

         while (var4.hasNext()) {
            float var5 = var4.nextFloat();
            if (this.map.putVal(var5, var3, true) == null) {
               var2 = true;
            }
         }

         class="kw">return var2;
      }

      @Override
      class="kw">public int hashCode() {
         int var1 = 0;
         FloatIterator var2 = this.iterator();

         while (var2.hasNext()) {
            var1 += Float.hashCode(var2.nextFloat());
         }

         class="kw">return var1;
      }

      @Override
      class="kw">public boolean equals(Object var1) {
         FloatSet var2;
         class="kw">return var1 class="kw">instanceof FloatSet && ((var2 = (FloatSet)var1) == this || this.containsAll(var2) && var2.containsAll(this));
      }

      class="kw">public float getNoEntryValue() {
         class="kw">return this.map.EMPTY;
      }

      class="kw">public int size() {
         class="kw">return this.map.size();
      }

      class="kw">public boolean isEmpty() {
         class="kw">return this.map.isEmpty();
      }

      class="kw">public Object[] toArray() {
         Object[] var1 = new Float[this.size()];
         FloatIterator var2 = this.iterator();

         int var3;
         for (var3 = 0; var3 < var1.length && var2.hasNext(); var3++) {
            var1[var3] = var2.nextFloat();
         }

         if (var1.length > var3 + 1) {
            var1[var3] = this.map.EMPTY;
         }

         class="kw">return var1;
      }

      class="kw">public Object[] toArray(Object[] var1) {
         FloatIterator var2 = this.iterator();

         int var3;
         for (var3 = 0; var3 < var1.length && var2.hasNext() && var3 <= var1.length; var3++) {
            var1[var3] = var2.next();
         }

         if (var1.length > var3 + 1) {
            var1[var3] = this.map.EMPTY;
         }

         class="kw">return var1;
      }

      class="kw">public float[] toFloatArray() {
         float[] var1 = new float[this.size()];
         FloatIterator var2 = this.iterator();

         int var3;
         for (var3 = 0; var3 < var1.length && var2.hasNext(); var3++) {
            var1[var3] = var2.next();
         }

         if (var1.length > var3 + 1) {
            var1[var3] = this.map.EMPTY;
         }

         class="kw">return var1;
      }

      class="kw">public float[] toArray(float[] var1) {
         FloatIterator var2 = this.iterator();

         int var3;
         for (var3 = 0; var3 < var1.length && var2.hasNext() && var3 <= var1.length; var3++) {
            var1[var3] = var2.next();
         }

         if (var1.length > var3 + 1) {
            var1[var3] = this.map.EMPTY;
         }

         class="kw">return var1;
      }

      class="kw">public float[] toFloatArray(float[] var1) {
         class="kw">return this.toArray(var1);
      }

      class="kw">public boolean containsAll(Collection<?> var1) {
         for (Object var3 : var1) {
            if (!(var3 class="kw">instanceof Long)) {
               class="kw">return false;
            }

            float var4 = (Float)var3;
            if (!this.contains(var4)) {
               class="kw">return false;
            }
         }

         class="kw">return true;
      }

      class="kw">public boolean containsAll(FloatCollection var1) {
         FloatIterator var2 = var1.iterator();

         while (var2.hasNext()) {
            float var3 = var2.next();
            if (!this.contains(var3)) {
               class="kw">return false;
            }
         }

         class="kw">return true;
      }

      class="kw">public boolean containsAll(float[] var1) {
         int var2 = var1.length;

         while (var2-- > 0) {
            if (!this.contains(var1[var2])) {
               class="kw">return false;
            }
         }

         class="kw">return true;
      }

      class="kw">public boolean addAll(Collection<? class="kw">extends Float> var1) {
         boolean var2 = false;

         for (Float var4 : var1) {
            float var5 = var4;
            if (this.add(var5)) {
               var2 = true;
            }
         }

         class="kw">return var2;
      }

      class="kw">public boolean addAll(float[] var1) {
         boolean var2 = false;
         int var3 = var1.length;

         while (var3-- > 0) {
            if (this.add(var1[var3])) {
               var2 = true;
            }
         }

         class="kw">return var2;
      }

      class="kw">public boolean retainAll(Collection<?> var1) {
         boolean var2 = false;
         FloatIterator var3 = this.iterator();

         while (var3.hasNext()) {
            if (!var1.contains(var3.next())) {
               var3.remove();
               var2 = true;
            }
         }

         class="kw">return var2;
      }

      class="kw">public boolean retainAll(FloatCollection var1) {
         if (this == var1) {
            class="kw">return false;
         }

         boolean var2 = false;
         FloatIterator var3 = this.iterator();

         while (var3.hasNext()) {
            if (!var1.contains(var3.next())) {
               var3.remove();
               var2 = true;
            }
         }

         class="kw">return var2;
      }

      class="kw">public boolean retainAll(float[] var1) {
         boolean var2 = false;
         FloatIterator var3 = this.iterator();

         while (var3.hasNext()) {
            if (Arrays.binarySearch(var1, var3.next().floatValue()) < 0) {
               var3.remove();
               var2 = true;
            }
         }

         class="kw">return var2;
      }

      class="kw">public boolean removeAll(Collection<?> var1) {
         boolean var2 = false;

         for (Object var4 : var1) {
            if (var4 class="kw">instanceof Float) {
               float var5 = (Float)var4;
               if (this.remove(var5)) {
                  var2 = true;
               }
            }
         }

         class="kw">return var2;
      }

      class="kw">public boolean removeAll(FloatCollection var1) {
         boolean var2 = false;
         FloatIterator var3 = var1.iterator();

         while (var3.hasNext()) {
            float var4 = var3.next();
            if (this.remove(var4)) {
               var2 = true;
            }
         }

         class="kw">return var2;
      }

      class="kw">public boolean removeAll(float[] var1) {
         boolean var2 = false;
         int var3 = var1.length;

         while (var3-- > 0) {
            if (this.remove(var1[var3])) {
               var2 = true;
            }
         }

         class="kw">return var2;
      }

      class="kw">public void clear() {
         this.map.clear();
      }

      class="kw">public FloatSpliterator spliterator() {
         Float2ObjectConcurrentHashMap var2 = this.map;
         long var3 = var2.sumCount();
         Float2ObjectConcurrentHashMap.Node[] var1 = var2.table;
         int var5 = var2.table == null ? 0 : var1.length;
         class="kw">return new Float2ObjectConcurrentHashMap.KeySpliterator<>(var1, var5, 0, var5, var3 < 0L ? 0L : var3);
      }
   }

   class="kw">protected class="kw">static class="kw">final class KeySpliterator<V> class="kw">extends Float2ObjectConcurrentHashMap.Traverser<V> class="kw">implements FloatSpliterator {
      class="kw">public long est;

      class="kw">public KeySpliterator(Float2ObjectConcurrentHashMap.Node<V>[] var1, int var2, int var3, int var4, long var5) {
         super(var1, var2, var3, var4);
         this.est = var5;
      }

      class="kw">public FloatSpliterator trySplit() {
         int var1 = this.baseIndex;
         int var2 = this.baseLimit;
         int var3;
         class="kw">return (var3 = this.baseIndex + this.baseLimit >>> 1) <= var1
            ? null
            : new Float2ObjectConcurrentHashMap.KeySpliterator<>(this.tab, this.baseSize, this.baseLimit = var3, var2, this.est >>>= 1);
      }

      class="kw">public boolean tryAdvance(Consumer<? super Float> var1) {
         class="kw">return var1 class="kw">instanceof FloatConsumer ? this.tryAdvance((FloatConsumer)var1) : this.tryAdvance(var1x -> var1.accept(var1x));
      }

      class="kw">public void forEachRemaining(FloatConsumer var1) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node var2;
         while ((var2 = this.advance()) != null) {
            var1.accept(var2.key);
         }
      }

      class="kw">public boolean tryAdvance(FloatConsumer var1) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node var2;
         if ((var2 = this.advance()) == null) {
            class="kw">return false;
         }

         var1.accept(var2.key);
         class="kw">return true;
      }

      class="kw">public long estimateSize() {
         class="kw">return this.est;
      }

      class="kw">public int characteristics() {
         class="kw">return 4353;
      }
   }

   class="kw">protected class="kw">abstract class="kw">static class LongReturningBulkTask<V> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Long> {
      class="kw">public long result;

      class="kw">public LongReturningBulkTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1, int var2, int var3, int var4, Float2ObjectConcurrentHashMap.Node<V>[] var5
      ) {
         super(var1, var2, var3, var4, var5);
      }

      class="kw">protected long invoke0() {
         this.quietlyInvoke();
         Throwable var2 = this.getException();
         if (var2 != null) {
            throw SneakyThrow.sneakyThrow(var2);
         } else {
            class="kw">return this.result;
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapEntry<V> class="kw">implements Float2ObjectConcurrentHashMap.Entry<V> {
      class="kw">public class="kw">final boolean empty;
      class="kw">public class="kw">final float key;
      class="kw">public V val;
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap<V> map;

      class="kw">public MapEntry(boolean var1, float var2, V var3, Float2ObjectConcurrentHashMap<V> var4) {
         this.empty = var1;
         this.key = var2;
         this.val = var3;
         this.map = var4;
      }

      @Override
      class="kw">public boolean isEmpty() {
         class="kw">return this.empty;
      }

      @Override
      class="kw">public Float getKey() {
         class="kw">return this.key;
      }

      @Override
      class="kw">public float getFloatKey() {
         class="kw">return this.key;
      }

      @Override
      class="kw">public V getValue() {
         class="kw">return this.val;
      }

      @Override
      class="kw">public String toString() {
         class="kw">return this.empty ? "EMPTY=" + this.val : this.key + "=" + this.val;
      }

      @Override
      class="kw">public boolean equals(Object var1) {
         if (this == var1) {
            class="kw">return true;
         }

         if (var1 class="kw">instanceof Float2ObjectConcurrentHashMap.Entry) {
            if (this.empty != ((Float2ObjectConcurrentHashMap.Entry)var1).isEmpty()) {
               class="kw">return false;
            } else {
               class="kw">return !this.empty && this.key != ((Float2ObjectConcurrentHashMap.Entry)var1).getFloatKey()
                  ? false
                  : this.val.equals(((Float2ObjectConcurrentHashMap.Entry)var1).getValue());
            }
         } else {
            class="kw">return false;
         }
      }

      @Override
      class="kw">public int hashCode() {
         int var1 = this.empty ? 1 : 0;
         var1 = 31 * var1 + Float.hashCode(this.key);
         class="kw">return 31 * var1 + this.val.hashCode();
      }

      @Override
      class="kw">public V setValue(V var1) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Object var2 = this.val;
         this.val = var1;
         this.map.put(this.key, var1);
         class="kw">return var2;
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceEntriesTask<V, U> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, U> {
      class="kw">public class="kw">final Function<Float2ObjectConcurrentHashMap.Entry<V>, ? class="kw">extends U> transformer;
      class="kw">public class="kw">final BiFunction<? super U, ? super U, ? class="kw">extends U> reducer;
      class="kw">public U result;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceEntriesTask<V, U> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceEntriesTask<V, U> nextRight;

      class="kw">public MapReduceEntriesTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceEntriesTask<V, U> var6,
         Function<Float2ObjectConcurrentHashMap.Entry<V>, ? class="kw">extends U> var7,
         BiFunction<? super U, ? super U, ? class="kw">extends U> var8
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.reducer = var8;
      }

      @Override
      class="kw">public class="kw">final U getRawResult() {
         class="kw">return this.result;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Function var1 = this.transformer;
         if (this.transformer != null) {
            BiFunction var2 = this.reducer;
            if (this.reducer != null) {
               int var3 = this.baseIndex;

               while (this.batch > 0) {
                  int var4 = this.baseLimit;
                  int var5;
                  if ((var5 = this.baseLimit + var3 >>> 1) <= var3) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceEntriesTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var5, var4, this.tab, this.rights, var1, var2
                     ))
                     .fork();
               }

               Object var9 = null;

               Float2ObjectConcurrentHashMap.Node var10;
               while ((var10 = this.advance()) != null) {
                  Object var12;
                  if ((var12 = (U)var1.apply(var10)) != null) {
                     var9 = var9 == null ? var12 : var2.apply(var9, var12);
                  }
               }

               this.result = var9;

               for (CountedCompleter var11 = this.firstComplete(); var11 != null; var11 = var11.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceEntriesTask var13 = (Float2ObjectConcurrentHashMap.MapReduceEntriesTask<V, U>)var11;

                  for (Float2ObjectConcurrentHashMap.MapReduceEntriesTask var6 = var13.rights; var6 != null; var6 = var13.rights = var6.nextRight) {
                     Object var8 = var6.result;
                     if (var6.result != null) {
                        Object var7 = var13.result;
                        var13.result = var13.result == null ? var8 : var2.apply(var7, var8);
                     }
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceEntriesToDoubleTask<V> class="kw">extends Float2ObjectConcurrentHashMap.DoubleReturningBulkTask<V> {
      class="kw">public class="kw">final ToDoubleFunction<Float2ObjectConcurrentHashMap.Entry<V>> transformer;
      class="kw">public class="kw">final DoubleBinaryOperator reducer;
      class="kw">public class="kw">final double basis;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceEntriesToDoubleTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceEntriesToDoubleTask<V> nextRight;

      class="kw">public MapReduceEntriesToDoubleTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceEntriesToDoubleTask<V> var6,
         ToDoubleFunction<Float2ObjectConcurrentHashMap.Entry<V>> var7,
         double var8,
         DoubleBinaryOperator var10
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.basis = var8;
         this.reducer = var10;
      }

      class="kw">public class="kw">final Double getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         ToDoubleFunction var1 = this.transformer;
         if (this.transformer != null) {
            DoubleBinaryOperator var2 = this.reducer;
            if (this.reducer != null) {
               double var3 = this.basis;
               int var5 = this.baseIndex;

               while (this.batch > 0) {
                  int var6 = this.baseLimit;
                  int var7;
                  if ((var7 = this.baseLimit + var5 >>> 1) <= var5) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceEntriesToDoubleTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var7, var6, this.tab, this.rights, var1, var3, var2
                     ))
                     .fork();
               }

               while ((var8 = this.advance()) != null) {
                  var3 = var2.applyAsDouble(var3, var1.applyAsDouble(var8));
               }

               this.result = var3;

               for (CountedCompleter var9 = this.firstComplete(); var9 != null; var9 = var9.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceEntriesToDoubleTask var10 = (Float2ObjectConcurrentHashMap.MapReduceEntriesToDoubleTask<V>)var9;

                  for (Float2ObjectConcurrentHashMap.MapReduceEntriesToDoubleTask var11 = var10.rights; var11 != null; var11 = var10.rights = var11.nextRight) {
                     var10.result = var2.applyAsDouble(var10.result, var11.result);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceEntriesToIntTask<V> class="kw">extends Float2ObjectConcurrentHashMap.IntReturningBulkTask<V> {
      class="kw">public class="kw">final ToIntFunction<Float2ObjectConcurrentHashMap.Entry<V>> transformer;
      class="kw">public class="kw">final IntBinaryOperator reducer;
      class="kw">public class="kw">final int basis;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceEntriesToIntTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceEntriesToIntTask<V> nextRight;

      class="kw">public MapReduceEntriesToIntTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceEntriesToIntTask<V> var6,
         ToIntFunction<Float2ObjectConcurrentHashMap.Entry<V>> var7,
         int var8,
         IntBinaryOperator var9
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.basis = var8;
         this.reducer = var9;
      }

      class="kw">public class="kw">final Integer getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         ToIntFunction var1 = this.transformer;
         if (this.transformer != null) {
            IntBinaryOperator var2 = this.reducer;
            if (this.reducer != null) {
               int var3 = this.basis;
               int var4 = this.baseIndex;

               while (this.batch > 0) {
                  int var5 = this.baseLimit;
                  int var6;
                  if ((var6 = this.baseLimit + var4 >>> 1) <= var4) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceEntriesToIntTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var6, var5, this.tab, this.rights, var1, var3, var2
                     ))
                     .fork();
               }

               while ((var7 = this.advance()) != null) {
                  var3 = var2.applyAsInt(var3, var1.applyAsInt(var7));
               }

               this.result = var3;

               for (CountedCompleter var8 = this.firstComplete(); var8 != null; var8 = var8.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceEntriesToIntTask var9 = (Float2ObjectConcurrentHashMap.MapReduceEntriesToIntTask<V>)var8;

                  for (Float2ObjectConcurrentHashMap.MapReduceEntriesToIntTask var10 = var9.rights; var10 != null; var10 = var9.rights = var10.nextRight) {
                     var9.result = var2.applyAsInt(var9.result, var10.result);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceEntriesToLongTask<V> class="kw">extends Float2ObjectConcurrentHashMap.LongReturningBulkTask<V> {
      class="kw">public class="kw">final ToLongFunction<Float2ObjectConcurrentHashMap.Entry<V>> transformer;
      class="kw">public class="kw">final LongBinaryOperator reducer;
      class="kw">public class="kw">final long basis;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceEntriesToLongTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceEntriesToLongTask<V> nextRight;

      class="kw">public MapReduceEntriesToLongTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceEntriesToLongTask<V> var6,
         ToLongFunction<Float2ObjectConcurrentHashMap.Entry<V>> var7,
         long var8,
         LongBinaryOperator var10
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.basis = var8;
         this.reducer = var10;
      }

      class="kw">public class="kw">final Long getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         ToLongFunction var1 = this.transformer;
         if (this.transformer != null) {
            LongBinaryOperator var2 = this.reducer;
            if (this.reducer != null) {
               long var3 = this.basis;
               int var5 = this.baseIndex;

               while (this.batch > 0) {
                  int var6 = this.baseLimit;
                  int var7;
                  if ((var7 = this.baseLimit + var5 >>> 1) <= var5) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceEntriesToLongTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var7, var6, this.tab, this.rights, var1, var3, var2
                     ))
                     .fork();
               }

               while ((var8 = this.advance()) != null) {
                  var3 = var2.applyAsLong(var3, var1.applyAsLong(var8));
               }

               this.result = var3;

               for (CountedCompleter var9 = this.firstComplete(); var9 != null; var9 = var9.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceEntriesToLongTask var10 = (Float2ObjectConcurrentHashMap.MapReduceEntriesToLongTask<V>)var9;

                  for (Float2ObjectConcurrentHashMap.MapReduceEntriesToLongTask var11 = var10.rights; var11 != null; var11 = var10.rights = var11.nextRight) {
                     var10.result = var2.applyAsLong(var10.result, var11.result);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceKeysTask<V, U> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, U> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.FloatFunction<? class="kw">extends U> transformer;
      class="kw">public class="kw">final BiFunction<? super U, ? super U, ? class="kw">extends U> reducer;
      class="kw">public U result;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceKeysTask<V, U> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceKeysTask<V, U> nextRight;

      class="kw">public MapReduceKeysTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceKeysTask<V, U> var6,
         Float2ObjectConcurrentHashMap.FloatFunction<? class="kw">extends U> var7,
         BiFunction<? super U, ? super U, ? class="kw">extends U> var8
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.reducer = var8;
      }

      @Override
      class="kw">public class="kw">final U getRawResult() {
         class="kw">return this.result;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.FloatFunction var1 = this.transformer;
         if (this.transformer != null) {
            BiFunction var2 = this.reducer;
            if (this.reducer != null) {
               int var3 = this.baseIndex;

               while (this.batch > 0) {
                  int var4 = this.baseLimit;
                  int var5;
                  if ((var5 = this.baseLimit + var3 >>> 1) <= var3) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceKeysTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var5, var4, this.tab, this.rights, var1, var2
                     ))
                     .fork();
               }

               Object var9 = null;

               Float2ObjectConcurrentHashMap.Node var10;
               while ((var10 = this.advance()) != null) {
                  Object var12;
                  if ((var12 = (U)var1.apply(var10.key)) != null) {
                     var9 = var9 == null ? var12 : var2.apply(var9, var12);
                  }
               }

               this.result = var9;

               for (CountedCompleter var11 = this.firstComplete(); var11 != null; var11 = var11.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceKeysTask var13 = (Float2ObjectConcurrentHashMap.MapReduceKeysTask<V, U>)var11;

                  for (Float2ObjectConcurrentHashMap.MapReduceKeysTask var6 = var13.rights; var6 != null; var6 = var13.rights = var6.nextRight) {
                     Object var8 = var6.result;
                     if (var6.result != null) {
                        Object var7 = var13.result;
                        var13.result = var13.result == null ? var8 : var2.apply(var7, var8);
                     }
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceKeysToDoubleTask<V> class="kw">extends Float2ObjectConcurrentHashMap.DoubleReturningBulkTask<V> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.FloatToDoubleFunction transformer;
      class="kw">public class="kw">final DoubleBinaryOperator reducer;
      class="kw">public class="kw">final double basis;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceKeysToDoubleTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceKeysToDoubleTask<V> nextRight;

      class="kw">public MapReduceKeysToDoubleTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceKeysToDoubleTask<V> var6,
         Float2ObjectConcurrentHashMap.FloatToDoubleFunction var7,
         double var8,
         DoubleBinaryOperator var10
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.basis = var8;
         this.reducer = var10;
      }

      class="kw">public class="kw">final Double getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.FloatToDoubleFunction var1 = this.transformer;
         if (this.transformer != null) {
            DoubleBinaryOperator var2 = this.reducer;
            if (this.reducer != null) {
               double var3 = this.basis;
               int var5 = this.baseIndex;

               while (this.batch > 0) {
                  int var6 = this.baseLimit;
                  int var7;
                  if ((var7 = this.baseLimit + var5 >>> 1) <= var5) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceKeysToDoubleTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var7, var6, this.tab, this.rights, var1, var3, var2
                     ))
                     .fork();
               }

               while ((var8 = this.advance()) != null) {
                  var3 = var2.applyAsDouble(var3, var1.applyAsDouble(var8.key));
               }

               this.result = var3;

               for (CountedCompleter var9 = this.firstComplete(); var9 != null; var9 = var9.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceKeysToDoubleTask var10 = (Float2ObjectConcurrentHashMap.MapReduceKeysToDoubleTask<V>)var9;

                  for (Float2ObjectConcurrentHashMap.MapReduceKeysToDoubleTask var11 = var10.rights; var11 != null; var11 = var10.rights = var11.nextRight) {
                     var10.result = var2.applyAsDouble(var10.result, var11.result);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceKeysToIntTask<V> class="kw">extends Float2ObjectConcurrentHashMap.IntReturningBulkTask<V> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.FloatToIntFunction transformer;
      class="kw">public class="kw">final IntBinaryOperator reducer;
      class="kw">public class="kw">final int basis;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceKeysToIntTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceKeysToIntTask<V> nextRight;

      class="kw">public MapReduceKeysToIntTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceKeysToIntTask<V> var6,
         Float2ObjectConcurrentHashMap.FloatToIntFunction var7,
         int var8,
         IntBinaryOperator var9
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.basis = var8;
         this.reducer = var9;
      }

      class="kw">public class="kw">final Integer getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.FloatToIntFunction var1 = this.transformer;
         if (this.transformer != null) {
            IntBinaryOperator var2 = this.reducer;
            if (this.reducer != null) {
               int var3 = this.basis;
               int var4 = this.baseIndex;

               while (this.batch > 0) {
                  int var5 = this.baseLimit;
                  int var6;
                  if ((var6 = this.baseLimit + var4 >>> 1) <= var4) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceKeysToIntTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var6, var5, this.tab, this.rights, var1, var3, var2
                     ))
                     .fork();
               }

               while ((var7 = this.advance()) != null) {
                  var3 = var2.applyAsInt(var3, var1.applyAsInt(var7.key));
               }

               this.result = var3;

               for (CountedCompleter var8 = this.firstComplete(); var8 != null; var8 = var8.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceKeysToIntTask var9 = (Float2ObjectConcurrentHashMap.MapReduceKeysToIntTask<V>)var8;

                  for (Float2ObjectConcurrentHashMap.MapReduceKeysToIntTask var10 = var9.rights; var10 != null; var10 = var9.rights = var10.nextRight) {
                     var9.result = var2.applyAsInt(var9.result, var10.result);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceKeysToLongTask<V> class="kw">extends Float2ObjectConcurrentHashMap.LongReturningBulkTask<V> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.FloatToLongFunction transformer;
      class="kw">public class="kw">final LongBinaryOperator reducer;
      class="kw">public class="kw">final long basis;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceKeysToLongTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceKeysToLongTask<V> nextRight;

      class="kw">public MapReduceKeysToLongTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceKeysToLongTask<V> var6,
         Float2ObjectConcurrentHashMap.FloatToLongFunction var7,
         long var8,
         LongBinaryOperator var10
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.basis = var8;
         this.reducer = var10;
      }

      class="kw">public class="kw">final Long getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.FloatToLongFunction var1 = this.transformer;
         if (this.transformer != null) {
            LongBinaryOperator var2 = this.reducer;
            if (this.reducer != null) {
               long var3 = this.basis;
               int var5 = this.baseIndex;

               while (this.batch > 0) {
                  int var6 = this.baseLimit;
                  int var7;
                  if ((var7 = this.baseLimit + var5 >>> 1) <= var5) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceKeysToLongTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var7, var6, this.tab, this.rights, var1, var3, var2
                     ))
                     .fork();
               }

               while ((var8 = this.advance()) != null) {
                  var3 = var2.applyAsLong(var3, var1.applyAsLong(var8.key));
               }

               this.result = var3;

               for (CountedCompleter var9 = this.firstComplete(); var9 != null; var9 = var9.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceKeysToLongTask var10 = (Float2ObjectConcurrentHashMap.MapReduceKeysToLongTask<V>)var9;

                  for (Float2ObjectConcurrentHashMap.MapReduceKeysToLongTask var11 = var10.rights; var11 != null; var11 = var10.rights = var11.nextRight) {
                     var10.result = var2.applyAsLong(var10.result, var11.result);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceMappingsTask<V, U> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, U> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends U> transformer;
      class="kw">public class="kw">final BiFunction<? super U, ? super U, ? class="kw">extends U> reducer;
      class="kw">public U result;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceMappingsTask<V, U> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceMappingsTask<V, U> nextRight;

      class="kw">public MapReduceMappingsTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceMappingsTask<V, U> var6,
         Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends U> var7,
         BiFunction<? super U, ? super U, ? class="kw">extends U> var8
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.reducer = var8;
      }

      @Override
      class="kw">public class="kw">final U getRawResult() {
         class="kw">return this.result;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.FloatObjFunction var1 = this.transformer;
         if (this.transformer != null) {
            BiFunction var2 = this.reducer;
            if (this.reducer != null) {
               int var3 = this.baseIndex;

               while (this.batch > 0) {
                  int var4 = this.baseLimit;
                  int var5;
                  if ((var5 = this.baseLimit + var3 >>> 1) <= var3) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceMappingsTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var5, var4, this.tab, this.rights, var1, var2
                     ))
                     .fork();
               }

               Object var9 = null;

               Float2ObjectConcurrentHashMap.Node var10;
               while ((var10 = this.advance()) != null) {
                  Object var12;
                  if ((var12 = (U)var1.apply(var10.key, var10.val)) != null) {
                     var9 = var9 == null ? var12 : var2.apply(var9, var12);
                  }
               }

               this.result = var9;

               for (CountedCompleter var11 = this.firstComplete(); var11 != null; var11 = var11.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceMappingsTask var13 = (Float2ObjectConcurrentHashMap.MapReduceMappingsTask<V, U>)var11;

                  for (Float2ObjectConcurrentHashMap.MapReduceMappingsTask var6 = var13.rights; var6 != null; var6 = var13.rights = var6.nextRight) {
                     Object var8 = var6.result;
                     if (var6.result != null) {
                        Object var7 = var13.result;
                        var13.result = var13.result == null ? var8 : var2.apply(var7, var8);
                     }
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceMappingsToDoubleTask<V> class="kw">extends Float2ObjectConcurrentHashMap.DoubleReturningBulkTask<V> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.ToDoubleFloatObjFunction<? super V> transformer;
      class="kw">public class="kw">final DoubleBinaryOperator reducer;
      class="kw">public class="kw">final double basis;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceMappingsToDoubleTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceMappingsToDoubleTask<V> nextRight;

      class="kw">public MapReduceMappingsToDoubleTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceMappingsToDoubleTask<V> var6,
         Float2ObjectConcurrentHashMap.ToDoubleFloatObjFunction<? super V> var7,
         double var8,
         DoubleBinaryOperator var10
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.basis = var8;
         this.reducer = var10;
      }

      class="kw">public class="kw">final Double getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.ToDoubleFloatObjFunction var1 = this.transformer;
         if (this.transformer != null) {
            DoubleBinaryOperator var2 = this.reducer;
            if (this.reducer != null) {
               double var3 = this.basis;
               int var5 = this.baseIndex;

               while (this.batch > 0) {
                  int var6 = this.baseLimit;
                  int var7;
                  if ((var7 = this.baseLimit + var5 >>> 1) <= var5) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceMappingsToDoubleTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var7, var6, this.tab, this.rights, var1, var3, var2
                     ))
                     .fork();
               }

               while ((var8 = this.advance()) != null) {
                  var3 = var2.applyAsDouble(var3, var1.applyAsDouble(var8.key, var8.val));
               }

               this.result = var3;

               for (CountedCompleter var9 = this.firstComplete(); var9 != null; var9 = var9.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceMappingsToDoubleTask var10 = (Float2ObjectConcurrentHashMap.MapReduceMappingsToDoubleTask<V>)var9;

                  for (Float2ObjectConcurrentHashMap.MapReduceMappingsToDoubleTask var11 = var10.rights; var11 != null; var11 = var10.rights = var11.nextRight) {
                     var10.result = var2.applyAsDouble(var10.result, var11.result);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceMappingsToIntTask<V> class="kw">extends Float2ObjectConcurrentHashMap.IntReturningBulkTask<V> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.ToIntFloatObjFunction<? super V> transformer;
      class="kw">public class="kw">final IntBinaryOperator reducer;
      class="kw">public class="kw">final int basis;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceMappingsToIntTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceMappingsToIntTask<V> nextRight;

      class="kw">public MapReduceMappingsToIntTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceMappingsToIntTask<V> var6,
         Float2ObjectConcurrentHashMap.ToIntFloatObjFunction<? super V> var7,
         int var8,
         IntBinaryOperator var9
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.basis = var8;
         this.reducer = var9;
      }

      class="kw">public class="kw">final Integer getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.ToIntFloatObjFunction var1 = this.transformer;
         if (this.transformer != null) {
            IntBinaryOperator var2 = this.reducer;
            if (this.reducer != null) {
               int var3 = this.basis;
               int var4 = this.baseIndex;

               while (this.batch > 0) {
                  int var5 = this.baseLimit;
                  int var6;
                  if ((var6 = this.baseLimit + var4 >>> 1) <= var4) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceMappingsToIntTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var6, var5, this.tab, this.rights, var1, var3, var2
                     ))
                     .fork();
               }

               while ((var7 = this.advance()) != null) {
                  var3 = var2.applyAsInt(var3, var1.applyAsInt(var7.key, var7.val));
               }

               this.result = var3;

               for (CountedCompleter var8 = this.firstComplete(); var8 != null; var8 = var8.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceMappingsToIntTask var9 = (Float2ObjectConcurrentHashMap.MapReduceMappingsToIntTask<V>)var8;

                  for (Float2ObjectConcurrentHashMap.MapReduceMappingsToIntTask var10 = var9.rights; var10 != null; var10 = var9.rights = var10.nextRight) {
                     var9.result = var2.applyAsInt(var9.result, var10.result);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceMappingsToLongTask<V> class="kw">extends Float2ObjectConcurrentHashMap.LongReturningBulkTask<V> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.ToLongFloatObjFunction<? super V> transformer;
      class="kw">public class="kw">final LongBinaryOperator reducer;
      class="kw">public class="kw">final long basis;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceMappingsToLongTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceMappingsToLongTask<V> nextRight;

      class="kw">public MapReduceMappingsToLongTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceMappingsToLongTask<V> var6,
         Float2ObjectConcurrentHashMap.ToLongFloatObjFunction<? super V> var7,
         long var8,
         LongBinaryOperator var10
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.basis = var8;
         this.reducer = var10;
      }

      class="kw">public class="kw">final Long getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.ToLongFloatObjFunction var1 = this.transformer;
         if (this.transformer != null) {
            LongBinaryOperator var2 = this.reducer;
            if (this.reducer != null) {
               long var3 = this.basis;
               int var5 = this.baseIndex;

               while (this.batch > 0) {
                  int var6 = this.baseLimit;
                  int var7;
                  if ((var7 = this.baseLimit + var5 >>> 1) <= var5) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceMappingsToLongTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var7, var6, this.tab, this.rights, var1, var3, var2
                     ))
                     .fork();
               }

               while ((var8 = this.advance()) != null) {
                  var3 = var2.applyAsLong(var3, var1.applyAsLong(var8.key, var8.val));
               }

               this.result = var3;

               for (CountedCompleter var9 = this.firstComplete(); var9 != null; var9 = var9.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceMappingsToLongTask var10 = (Float2ObjectConcurrentHashMap.MapReduceMappingsToLongTask<V>)var9;

                  for (Float2ObjectConcurrentHashMap.MapReduceMappingsToLongTask var11 = var10.rights; var11 != null; var11 = var10.rights = var11.nextRight) {
                     var10.result = var2.applyAsLong(var10.result, var11.result);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceValuesTask<V, U> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, U> {
      class="kw">public class="kw">final Function<? super V, ? class="kw">extends U> transformer;
      class="kw">public class="kw">final BiFunction<? super U, ? super U, ? class="kw">extends U> reducer;
      class="kw">public U result;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceValuesTask<V, U> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceValuesTask<V, U> nextRight;

      class="kw">public MapReduceValuesTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceValuesTask<V, U> var6,
         Function<? super V, ? class="kw">extends U> var7,
         BiFunction<? super U, ? super U, ? class="kw">extends U> var8
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.reducer = var8;
      }

      @Override
      class="kw">public class="kw">final U getRawResult() {
         class="kw">return this.result;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Function var1 = this.transformer;
         if (this.transformer != null) {
            BiFunction var2 = this.reducer;
            if (this.reducer != null) {
               int var3 = this.baseIndex;

               while (this.batch > 0) {
                  int var4 = this.baseLimit;
                  int var5;
                  if ((var5 = this.baseLimit + var3 >>> 1) <= var3) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceValuesTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var5, var4, this.tab, this.rights, var1, var2
                     ))
                     .fork();
               }

               Object var9 = null;

               Float2ObjectConcurrentHashMap.Node var10;
               while ((var10 = this.advance()) != null) {
                  Object var12;
                  if ((var12 = (U)var1.apply(var10.val)) != null) {
                     var9 = var9 == null ? var12 : var2.apply(var9, var12);
                  }
               }

               this.result = var9;

               for (CountedCompleter var11 = this.firstComplete(); var11 != null; var11 = var11.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceValuesTask var13 = (Float2ObjectConcurrentHashMap.MapReduceValuesTask<V, U>)var11;

                  for (Float2ObjectConcurrentHashMap.MapReduceValuesTask var6 = var13.rights; var6 != null; var6 = var13.rights = var6.nextRight) {
                     Object var8 = var6.result;
                     if (var6.result != null) {
                        Object var7 = var13.result;
                        var13.result = var13.result == null ? var8 : var2.apply(var7, var8);
                     }
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceValuesToDoubleTask<V> class="kw">extends Float2ObjectConcurrentHashMap.DoubleReturningBulkTask<V> {
      class="kw">public class="kw">final ToDoubleFunction<? super V> transformer;
      class="kw">public class="kw">final DoubleBinaryOperator reducer;
      class="kw">public class="kw">final double basis;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceValuesToDoubleTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceValuesToDoubleTask<V> nextRight;

      class="kw">public MapReduceValuesToDoubleTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceValuesToDoubleTask<V> var6,
         ToDoubleFunction<? super V> var7,
         double var8,
         DoubleBinaryOperator var10
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.basis = var8;
         this.reducer = var10;
      }

      class="kw">public class="kw">final Double getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         ToDoubleFunction var1 = this.transformer;
         if (this.transformer != null) {
            DoubleBinaryOperator var2 = this.reducer;
            if (this.reducer != null) {
               double var3 = this.basis;
               int var5 = this.baseIndex;

               while (this.batch > 0) {
                  int var6 = this.baseLimit;
                  int var7;
                  if ((var7 = this.baseLimit + var5 >>> 1) <= var5) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceValuesToDoubleTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var7, var6, this.tab, this.rights, var1, var3, var2
                     ))
                     .fork();
               }

               while ((var8 = this.advance()) != null) {
                  var3 = var2.applyAsDouble(var3, var1.applyAsDouble(var8.val));
               }

               this.result = var3;

               for (CountedCompleter var9 = this.firstComplete(); var9 != null; var9 = var9.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceValuesToDoubleTask var10 = (Float2ObjectConcurrentHashMap.MapReduceValuesToDoubleTask<V>)var9;

                  for (Float2ObjectConcurrentHashMap.MapReduceValuesToDoubleTask var11 = var10.rights; var11 != null; var11 = var10.rights = var11.nextRight) {
                     var10.result = var2.applyAsDouble(var10.result, var11.result);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceValuesToIntTask<V> class="kw">extends Float2ObjectConcurrentHashMap.IntReturningBulkTask<V> {
      class="kw">public class="kw">final ToIntFunction<? super V> transformer;
      class="kw">public class="kw">final IntBinaryOperator reducer;
      class="kw">public class="kw">final int basis;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceValuesToIntTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceValuesToIntTask<V> nextRight;

      class="kw">public MapReduceValuesToIntTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceValuesToIntTask<V> var6,
         ToIntFunction<? super V> var7,
         int var8,
         IntBinaryOperator var9
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.basis = var8;
         this.reducer = var9;
      }

      class="kw">public class="kw">final Integer getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         ToIntFunction var1 = this.transformer;
         if (this.transformer != null) {
            IntBinaryOperator var2 = this.reducer;
            if (this.reducer != null) {
               int var3 = this.basis;
               int var4 = this.baseIndex;

               while (this.batch > 0) {
                  int var5 = this.baseLimit;
                  int var6;
                  if ((var6 = this.baseLimit + var4 >>> 1) <= var4) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceValuesToIntTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var6, var5, this.tab, this.rights, var1, var3, var2
                     ))
                     .fork();
               }

               while ((var7 = this.advance()) != null) {
                  var3 = var2.applyAsInt(var3, var1.applyAsInt(var7.val));
               }

               this.result = var3;

               for (CountedCompleter var8 = this.firstComplete(); var8 != null; var8 = var8.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceValuesToIntTask var9 = (Float2ObjectConcurrentHashMap.MapReduceValuesToIntTask<V>)var8;

                  for (Float2ObjectConcurrentHashMap.MapReduceValuesToIntTask var10 = var9.rights; var10 != null; var10 = var9.rights = var10.nextRight) {
                     var9.result = var2.applyAsInt(var9.result, var10.result);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class MapReduceValuesToLongTask<V> class="kw">extends Float2ObjectConcurrentHashMap.LongReturningBulkTask<V> {
      class="kw">public class="kw">final ToLongFunction<? super V> transformer;
      class="kw">public class="kw">final LongBinaryOperator reducer;
      class="kw">public class="kw">final long basis;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceValuesToLongTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.MapReduceValuesToLongTask<V> nextRight;

      class="kw">public MapReduceValuesToLongTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.MapReduceValuesToLongTask<V> var6,
         ToLongFunction<? super V> var7,
         long var8,
         LongBinaryOperator var10
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.transformer = var7;
         this.basis = var8;
         this.reducer = var10;
      }

      class="kw">public class="kw">final Long getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         ToLongFunction var1 = this.transformer;
         if (this.transformer != null) {
            LongBinaryOperator var2 = this.reducer;
            if (this.reducer != null) {
               long var3 = this.basis;
               int var5 = this.baseIndex;

               while (this.batch > 0) {
                  int var6 = this.baseLimit;
                  int var7;
                  if ((var7 = this.baseLimit + var5 >>> 1) <= var5) {
                     break;
                  }

                  this.addToPendingCount(1);
                  (this.rights = new Float2ObjectConcurrentHashMap.MapReduceValuesToLongTask<>(
                        this, this.batch >>>= 1, this.baseLimit = var7, var6, this.tab, this.rights, var1, var3, var2
                     ))
                     .fork();
               }

               while ((var8 = this.advance()) != null) {
                  var3 = var2.applyAsLong(var3, var1.applyAsLong(var8.val));
               }

               this.result = var3;

               for (CountedCompleter var9 = this.firstComplete(); var9 != null; var9 = var9.nextComplete()) {
                  Float2ObjectConcurrentHashMap.MapReduceValuesToLongTask var10 = (Float2ObjectConcurrentHashMap.MapReduceValuesToLongTask<V>)var9;

                  for (Float2ObjectConcurrentHashMap.MapReduceValuesToLongTask var11 = var10.rights; var11 != null; var11 = var10.rights = var11.nextRight) {
                     var10.result = var2.applyAsLong(var10.result, var11.result);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class Node<V> class="kw">implements Float2ObjectConcurrentHashMap.Entry<V> {
      class="kw">public class="kw">final float EMPTY;
      class="kw">public class="kw">final int hash;
      class="kw">public class="kw">final float key;
      class="kw">public class="kw">volatile V val;
      class="kw">public class="kw">volatile Float2ObjectConcurrentHashMap.Node<V> next;

      class="kw">public Node(float var1, int var2, float var3, V var4, Float2ObjectConcurrentHashMap.Node<V> var5) {
         this.EMPTY = var1;
         this.hash = var2;
         this.key = var3;
         this.val = var4;
         this.next = var5;
      }

      @Override
      class="kw">public class="kw">final boolean isEmpty() {
         class="kw">return this.key == this.EMPTY;
      }

      @Override
      class="kw">public class="kw">final Float getKey() {
         class="kw">return this.key;
      }

      @Override
      class="kw">public class="kw">final float getFloatKey() {
         class="kw">return this.key;
      }

      @Override
      class="kw">public class="kw">final V getValue() {
         class="kw">return this.val;
      }

      @Override
      class="kw">public class="kw">final int hashCode() {
         class="kw">return Float.hashCode(this.key) ^ this.val.hashCode();
      }

      @Override
      class="kw">public class="kw">final String toString() {
         class="kw">return this.isEmpty() ? "EMPTY=" + this.val : this.key + "=" + this.val;
      }

      @Override
      class="kw">public class="kw">final V setValue(V var1) {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final boolean equals(Object var1) {
         boolean var2 = this.isEmpty();
         if (var1 class="kw">instanceof Float2ObjectConcurrentHashMap.Entry) {
            if (var2 != ((Float2ObjectConcurrentHashMap.Entry)var1).isEmpty()) {
               class="kw">return false;
            } else {
               class="kw">return !var2 && this.key != ((Float2ObjectConcurrentHashMap.Entry)var1).getFloatKey()
                  ? false
                  : this.val.equals(((Float2ObjectConcurrentHashMap.Entry)var1).getValue());
            }
         } else {
            class="kw">return false;
         }
      }

      class="kw">protected Float2ObjectConcurrentHashMap.Node<V> find(int var1, float var2) {
         Float2ObjectConcurrentHashMap.Node var3 = this;
         if (var2 != this.EMPTY) {
            do {
               if (var3.hash == var1) {
                  float var4 = var3.key;
                  if (var3.key == var2 || var4 != this.EMPTY && var2 == var4) {
                     class="kw">return var3;
                  }
               }
            } while ((var3 = var3.next) != null);
         }

         class="kw">return null;
      }
   }

   class="kw">protected class="kw">static class="kw">final class ReduceEntriesTask<V> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, Float2ObjectConcurrentHashMap.Entry<V>> {
      class="kw">public class="kw">final BiFunction<Float2ObjectConcurrentHashMap.Entry<V>, Float2ObjectConcurrentHashMap.Entry<V>, ? class="kw">extends Float2ObjectConcurrentHashMap.Entry<V>> reducer;
      class="kw">public Float2ObjectConcurrentHashMap.Entry<V> result;
      class="kw">public Float2ObjectConcurrentHashMap.ReduceEntriesTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.ReduceEntriesTask<V> nextRight;

      class="kw">public ReduceEntriesTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.ReduceEntriesTask<V> var6,
         BiFunction<Float2ObjectConcurrentHashMap.Entry<V>, Float2ObjectConcurrentHashMap.Entry<V>, ? class="kw">extends Float2ObjectConcurrentHashMap.Entry<V>> var7
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.reducer = var7;
      }

      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.Entry<V> getRawResult() {
         class="kw">return this.result;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         BiFunction var1 = this.reducer;
         if (this.reducer != null) {
            int var2 = this.baseIndex;

            while (this.batch > 0) {
               int var3 = this.baseLimit;
               int var4;
               if ((var4 = this.baseLimit + var2 >>> 1) <= var2) {
                  break;
               }

               this.addToPendingCount(1);
               (this.rights = new Float2ObjectConcurrentHashMap.ReduceEntriesTask<>(
                     this, this.batch >>>= 1, this.baseLimit = var4, var3, this.tab, this.rights, var1
                  ))
                  .fork();
            }

            Float2ObjectConcurrentHashMap.Entry var8 = null;

            Float2ObjectConcurrentHashMap.Node var9;
            while ((var9 = this.advance()) != null) {
               var8 = var8 == null ? var9 : var1.apply(var8, var9);
            }

            this.result = var8;

            for (CountedCompleter var10 = this.firstComplete(); var10 != null; var10 = var10.nextComplete()) {
               Float2ObjectConcurrentHashMap.ReduceEntriesTask var11 = (Float2ObjectConcurrentHashMap.ReduceEntriesTask<V>)var10;

               for (Float2ObjectConcurrentHashMap.ReduceEntriesTask var5 = var11.rights; var5 != null; var5 = var11.rights = var5.nextRight) {
                  Float2ObjectConcurrentHashMap.Entry var7 = var5.result;
                  if (var5.result != null) {
                     Float2ObjectConcurrentHashMap.Entry var6 = var11.result;
                     var11.result = var11.result == null ? var7 : var1.apply(var6, var7);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class ReduceKeysTask<V> class="kw">extends Float2ObjectConcurrentHashMap.FloatReturningBulkTask2<V> {
      class="kw">public class="kw">final float EMPTY;
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.FloatReduceTaskOperator reducer;
      class="kw">public Float2ObjectConcurrentHashMap.ReduceKeysTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.ReduceKeysTask<V> nextRight;

      class="kw">public ReduceKeysTask(
         float var1,
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var2,
         int var3,
         int var4,
         int var5,
         Float2ObjectConcurrentHashMap.Node<V>[] var6,
         Float2ObjectConcurrentHashMap.ReduceKeysTask<V> var7,
         Float2ObjectConcurrentHashMap.FloatReduceTaskOperator var8
      ) {
         super(var2, var3, var4, var5, var6);
         this.nextRight = var7;
         this.EMPTY = var1;
         this.reducer = var8;
      }

      class="kw">public class="kw">final Float getRawResult() {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.FloatReduceTaskOperator var1 = this.reducer;
         if (this.reducer != null) {
            int var2 = this.baseIndex;

            while (this.batch > 0) {
               int var3 = this.baseLimit;
               int var4;
               if ((var4 = this.baseLimit + var2 >>> 1) <= var2) {
                  break;
               }

               this.addToPendingCount(1);
               (this.rights = new Float2ObjectConcurrentHashMap.ReduceKeysTask<>(
                     this.EMPTY, this, this.batch >>>= 1, this.baseLimit = var4, var3, this.tab, this.rights, var1
                  ))
                  .fork();
            }

            boolean var9 = false;
            float var10 = this.EMPTY;

            Float2ObjectConcurrentHashMap.Node var11;
            while ((var11 = this.advance()) != null) {
               float var5 = var11.key;
               if (!var9) {
                  var9 = true;
                  var10 = var5;
               } else if (!var11.isEmpty()) {
                  var9 = true;
                  var10 = var1.reduce(this.EMPTY, var10, var5);
               }
            }

            this.result = var10;

            for (CountedCompleter var12 = this.firstComplete(); var12 != null; var12 = var12.nextComplete()) {
               Float2ObjectConcurrentHashMap.ReduceKeysTask var13 = (Float2ObjectConcurrentHashMap.ReduceKeysTask<V>)var12;

               for (Float2ObjectConcurrentHashMap.ReduceKeysTask var6 = var13.rights; var6 != null; var6 = var13.rights = var6.nextRight) {
                  float var8 = var6.result;
                  if (var6.result != this.EMPTY) {
                     float var7 = var13.result;
                     var13.result = var13.result == this.EMPTY ? var8 : var1.reduce(this.EMPTY, var7, var8);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class ReduceValuesTask<V> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, V> {
      class="kw">public class="kw">final BiFunction<? super V, ? super V, ? class="kw">extends V> reducer;
      class="kw">public V result;
      class="kw">public Float2ObjectConcurrentHashMap.ReduceValuesTask<V> rights;
      class="kw">public Float2ObjectConcurrentHashMap.ReduceValuesTask<V> nextRight;

      class="kw">public ReduceValuesTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.ReduceValuesTask<V> var6,
         BiFunction<? super V, ? super V, ? class="kw">extends V> var7
      ) {
         super(var1, var2, var3, var4, var5);
         this.nextRight = var6;
         this.reducer = var7;
      }

      @Override
      class="kw">public class="kw">final V getRawResult() {
         class="kw">return this.result;
      }

      @Override
      class="kw">public class="kw">final void compute() {
         BiFunction var1 = this.reducer;
         if (this.reducer != null) {
            int var2 = this.baseIndex;

            while (this.batch > 0) {
               int var3 = this.baseLimit;
               int var4;
               if ((var4 = this.baseLimit + var2 >>> 1) <= var2) {
                  break;
               }

               this.addToPendingCount(1);
               (this.rights = new Float2ObjectConcurrentHashMap.ReduceValuesTask<>(
                     this, this.batch >>>= 1, this.baseLimit = var4, var3, this.tab, this.rights, var1
                  ))
                  .fork();
            }

            Object var8 = null;

            Float2ObjectConcurrentHashMap.Node var9;
            while ((var9 = this.advance()) != null) {
               Object var11 = var9.val;
               var8 = var8 == null ? var11 : var1.apply(var8, var11);
            }

            this.result = var8;

            for (CountedCompleter var10 = this.firstComplete(); var10 != null; var10 = var10.nextComplete()) {
               Float2ObjectConcurrentHashMap.ReduceValuesTask var12 = (Float2ObjectConcurrentHashMap.ReduceValuesTask<V>)var10;

               for (Float2ObjectConcurrentHashMap.ReduceValuesTask var5 = var12.rights; var5 != null; var5 = var12.rights = var5.nextRight) {
                  Object var7 = var5.result;
                  if (var5.result != null) {
                     Object var6 = var12.result;
                     var12.result = var12.result == null ? var7 : var1.apply(var6, var7);
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class ReservationNode<V> class="kw">extends Float2ObjectConcurrentHashMap.Node<V> {
      class="kw">public ReservationNode(float var1) {
         super(var1, -3, var1, null, null);
      }

      @Override
      class="kw">protected Float2ObjectConcurrentHashMap.Node<V> find(int var1, float var2) {
         class="kw">return null;
      }
   }

   class="kw">protected class="kw">static class="kw">final class SearchEntriesTask<V, U> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, U> {
      class="kw">public class="kw">final Function<Float2ObjectConcurrentHashMap.Entry<V>, ? class="kw">extends U> searchFunction;
      class="kw">public class="kw">final AtomicReference<U> result;

      class="kw">public SearchEntriesTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Function<Float2ObjectConcurrentHashMap.Entry<V>, ? class="kw">extends U> var6,
         AtomicReference<U> var7
      ) {
         super(var1, var2, var3, var4, var5);
         this.searchFunction = var6;
         this.result = var7;
      }

      @Override
      class="kw">public class="kw">final U getRawResult() {
         class="kw">return this.result.get();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Function var1 = this.searchFunction;
         if (this.searchFunction != null) {
            AtomicReference var2 = this.result;
            if (this.result != null) {
               int var3 = this.baseIndex;

               while (this.batch > 0) {
                  int var4 = this.baseLimit;
                  int var5;
                  if ((var5 = this.baseLimit + var3 >>> 1) <= var3) {
                     break;
                  }

                  if (var2.get() != null) {
                     class="kw">return;
                  }

                  this.addToPendingCount(1);
                  new Float2ObjectConcurrentHashMap.SearchEntriesTask<>(this, this.batch >>>= 1, this.baseLimit = var5, var4, this.tab, var1, var2).fork();
               }

               while (var2.get() == null) {
                  Float2ObjectConcurrentHashMap.Node var7;
                  if ((var7 = this.advance()) == null) {
                     this.propagateCompletion();
                     break;
                  }

                  Object var6;
                  if ((var6 = (U)var1.apply(var7)) != null) {
                     if (var2.compareAndSet(null, var6)) {
                        this.quietlyCompleteRoot();
                     }

                     class="kw">return;
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class SearchKeysTask<V, U> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, U> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.FloatFunction<? class="kw">extends U> searchFunction;
      class="kw">public class="kw">final AtomicReference<U> result;

      class="kw">public SearchKeysTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.FloatFunction<? class="kw">extends U> var6,
         AtomicReference<U> var7
      ) {
         super(var1, var2, var3, var4, var5);
         this.searchFunction = var6;
         this.result = var7;
      }

      @Override
      class="kw">public class="kw">final U getRawResult() {
         class="kw">return this.result.get();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.FloatFunction var1 = this.searchFunction;
         if (this.searchFunction != null) {
            AtomicReference var2 = this.result;
            if (this.result != null) {
               int var3 = this.baseIndex;

               while (this.batch > 0) {
                  int var4 = this.baseLimit;
                  int var5;
                  if ((var5 = this.baseLimit + var3 >>> 1) <= var3) {
                     break;
                  }

                  if (var2.get() != null) {
                     class="kw">return;
                  }

                  this.addToPendingCount(1);
                  new Float2ObjectConcurrentHashMap.SearchKeysTask<>(this, this.batch >>>= 1, this.baseLimit = var5, var4, this.tab, var1, var2).fork();
               }

               while (var2.get() == null) {
                  Float2ObjectConcurrentHashMap.Node var7;
                  if ((var7 = this.advance()) == null) {
                     this.propagateCompletion();
                     break;
                  }

                  Object var6;
                  if ((var6 = (U)var1.apply(var7.key)) != null) {
                     if (var2.compareAndSet(null, var6)) {
                        this.quietlyCompleteRoot();
                     }
                     break;
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class SearchMappingsTask<V, U> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, U> {
      class="kw">public class="kw">final Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends U> searchFunction;
      class="kw">public class="kw">final AtomicReference<U> result;

      class="kw">public SearchMappingsTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Float2ObjectConcurrentHashMap.FloatObjFunction<? super V, ? class="kw">extends U> var6,
         AtomicReference<U> var7
      ) {
         super(var1, var2, var3, var4, var5);
         this.searchFunction = var6;
         this.result = var7;
      }

      @Override
      class="kw">public class="kw">final U getRawResult() {
         class="kw">return this.result.get();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Float2ObjectConcurrentHashMap.FloatObjFunction var1 = this.searchFunction;
         if (this.searchFunction != null) {
            AtomicReference var2 = this.result;
            if (this.result != null) {
               int var3 = this.baseIndex;

               while (this.batch > 0) {
                  int var4 = this.baseLimit;
                  int var5;
                  if ((var5 = this.baseLimit + var3 >>> 1) <= var3) {
                     break;
                  }

                  if (var2.get() != null) {
                     class="kw">return;
                  }

                  this.addToPendingCount(1);
                  new Float2ObjectConcurrentHashMap.SearchMappingsTask<>(this, this.batch >>>= 1, this.baseLimit = var5, var4, this.tab, var1, var2).fork();
               }

               while (var2.get() == null) {
                  Float2ObjectConcurrentHashMap.Node var7;
                  if ((var7 = this.advance()) == null) {
                     this.propagateCompletion();
                     break;
                  }

                  Object var6;
                  if ((var6 = (U)var1.apply(var7.key, var7.val)) != null) {
                     if (var2.compareAndSet(null, var6)) {
                        this.quietlyCompleteRoot();
                     }
                     break;
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class SearchValuesTask<V, U> class="kw">extends Float2ObjectConcurrentHashMap.BulkTask<V, U> {
      class="kw">public class="kw">final Function<? super V, ? class="kw">extends U> searchFunction;
      class="kw">public class="kw">final AtomicReference<U> result;

      class="kw">public SearchValuesTask(
         Float2ObjectConcurrentHashMap.BulkTask<V, ?> var1,
         int var2,
         int var3,
         int var4,
         Float2ObjectConcurrentHashMap.Node<V>[] var5,
         Function<? super V, ? class="kw">extends U> var6,
         AtomicReference<U> var7
      ) {
         super(var1, var2, var3, var4, var5);
         this.searchFunction = var6;
         this.result = var7;
      }

      @Override
      class="kw">public class="kw">final U getRawResult() {
         class="kw">return this.result.get();
      }

      @Override
      class="kw">public class="kw">final void compute() {
         Function var1 = this.searchFunction;
         if (this.searchFunction != null) {
            AtomicReference var2 = this.result;
            if (this.result != null) {
               int var3 = this.baseIndex;

               while (this.batch > 0) {
                  int var4 = this.baseLimit;
                  int var5;
                  if ((var5 = this.baseLimit + var3 >>> 1) <= var3) {
                     break;
                  }

                  if (var2.get() != null) {
                     class="kw">return;
                  }

                  this.addToPendingCount(1);
                  new Float2ObjectConcurrentHashMap.SearchValuesTask<>(this, this.batch >>>= 1, this.baseLimit = var5, var4, this.tab, var1, var2).fork();
               }

               while (var2.get() == null) {
                  Float2ObjectConcurrentHashMap.Node var7;
                  if ((var7 = this.advance()) == null) {
                     this.propagateCompletion();
                     break;
                  }

                  Object var6;
                  if ((var6 = (U)var1.apply(var7.val)) != null) {
                     if (var2.compareAndSet(null, var6)) {
                        this.quietlyCompleteRoot();
                     }
                     break;
                  }
               }
            }
         }
      }
   }

   class="kw">protected class="kw">static class Segment<V> class="kw">extends ReentrantLock class="kw">implements Serializable {
      class="kw">public class="kw">static class="kw">final long serialVersionUID = 2249069246763182397L;
      class="kw">public class="kw">final float loadFactor;

      class="kw">public Segment(float var1) {
         this.loadFactor = var1;
      }
   }

   class="kw">protected class="kw">static class="kw">final class TableStack<V> {
      class="kw">public int length;
      class="kw">public int index;
      class="kw">public Float2ObjectConcurrentHashMap.Node<V>[] tab;
      class="kw">public Float2ObjectConcurrentHashMap.TableStack<V> next;

      class="kw">public TableStack() {
      }
   }

   @FunctionalInterface
   class="kw">public class="kw">interface ToDoubleFloatObjFunction<V> {
      double applyAsDouble(float var1, V var2);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface ToFloatFunction<T> {
      float applyAsFloat(T var1);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface ToIntFloatObjFunction<V> {
      int applyAsInt(float var1, V var2);
   }

   @FunctionalInterface
   class="kw">public class="kw">interface ToLongFloatObjFunction<V> {
      long applyAsLong(float var1, V var2);
   }

   class="kw">protected class="kw">static class Traverser<V> {
      class="kw">public Float2ObjectConcurrentHashMap.Node<V>[] tab;
      class="kw">public Float2ObjectConcurrentHashMap.Node<V> next;
      class="kw">public Float2ObjectConcurrentHashMap.TableStack<V> stack;
      class="kw">public Float2ObjectConcurrentHashMap.TableStack<V> spare;
      class="kw">public int index;
      class="kw">public int baseIndex;
      class="kw">public int baseLimit;
      class="kw">public class="kw">final int baseSize;

      class="kw">public Traverser(Float2ObjectConcurrentHashMap.Node<V>[] var1, int var2, int var3, int var4) {
         this.tab = var1;
         this.baseSize = var2;
         this.baseIndex = this.index = var3;
         this.baseLimit = var4;
         this.next = null;
      }

      class="kw">protected class="kw">final Float2ObjectConcurrentHashMap.Node<V> advance() {
         Float2ObjectConcurrentHashMap.Node var1 = this.next;
         if (this.next != null) {
            var1 = var1.next;
         }

         while (true) {
            if (var1 != null) {
               class="kw">return this.next = var1;
            }

            if (this.baseIndex >= this.baseLimit) {
               break;
            }

            Float2ObjectConcurrentHashMap.Node[] var2 = this.tab;
            if (this.tab == null) {
               break;
            }

            int var4;
            int var10000 = var4 = var2.length;
            int var3 = this.index;
            if (var10000 <= this.index || var3 < 0) {
               break;
            }

            if ((var1 = Float2ObjectConcurrentHashMap.tabAt(var2, var3)) != null && var1.hash < 0) {
               if (var1 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                  this.tab = ((Float2ObjectConcurrentHashMap.ForwardingNode)var1).nextTable;
                  var1 = null;
                  this.pushState(var2, var3, var4);
                  class="kw">continue;
               }

               if (var1 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                  var1 = ((Float2ObjectConcurrentHashMap.TreeBin)var1).first;
               } else {
                  var1 = null;
               }
            }

            if (this.stack != null) {
               this.recoverState(var4);
            } else if ((this.index = var3 + this.baseSize) >= var4) {
               this.index = ++this.baseIndex;
            }
         }

         class="kw">return this.next = null;
      }

      class="kw">protected void pushState(Float2ObjectConcurrentHashMap.Node<V>[] var1, int var2, int var3) {
         Float2ObjectConcurrentHashMap.TableStack var4 = this.spare;
         if (var4 != null) {
            this.spare = var4.next;
         } else {
            var4 = new Float2ObjectConcurrentHashMap.TableStack<>();
         }

         var4.tab = var1;
         var4.length = var3;
         var4.index = var2;
         var4.next = this.stack;
         this.stack = var4;
      }

      class="kw">protected void recoverState(int var1) {
         while (true) {
            Float2ObjectConcurrentHashMap.TableStack var2 = this.stack;
            if (this.stack != null) {
               int var3 = var2.length;
               if ((this.index = this.index + var2.length) >= var1) {
                  var1 = var3;
                  this.index = var2.index;
                  this.tab = var2.tab;
                  var2.tab = null;
                  Float2ObjectConcurrentHashMap.TableStack var4 = var2.next;
                  var2.next = this.spare;
                  this.stack = var4;
                  this.spare = var2;
                  class="kw">continue;
               }
            }

            if (var2 == null && (this.index = this.index + this.baseSize) >= var1) {
               this.index = ++this.baseIndex;
            }

            class="kw">return;
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class TreeBin<V> class="kw">extends Float2ObjectConcurrentHashMap.Node<V> {
      class="kw">public Float2ObjectConcurrentHashMap.TreeNode<V> root;
      class="kw">public class="kw">volatile Float2ObjectConcurrentHashMap.TreeNode<V> first;
      class="kw">public class="kw">volatile Thread waiter;
      class="kw">public class="kw">volatile int lockState;
      class="kw">public class="kw">static class="kw">final int WRITER = 1;
      class="kw">public class="kw">static class="kw">final int WAITER = 2;
      class="kw">public class="kw">static class="kw">final int READER = 4;
      class="kw">protected class="kw">static class="kw">final Unsafe U;
      class="kw">protected class="kw">static class="kw">final long LOCKSTATE;

      class="kw">protected int tieBreakOrder(float var1, float var2) {
         int var3 = Float.compare(var1, var2);
         class="kw">return var3 > 0 ? 1 : -1;
      }

      class="kw">public TreeBin(float var1, Float2ObjectConcurrentHashMap.TreeNode<V> var2) {
         super(var1, -2, var1, null, null);
         this.first = var2;
         Float2ObjectConcurrentHashMap.TreeNode var3 = null;
         Float2ObjectConcurrentHashMap.TreeNode var4 = var2;

         while (var4 != null) {
            Float2ObjectConcurrentHashMap.TreeNode var5 = (Float2ObjectConcurrentHashMap.TreeNode<V>)var4.next;
            var4.left = var4.right = null;
            if (var3 == null) {
               var4.parent = null;
               var4.red = false;
               var3 = var4;
            } else {
               float var6 = var4.key;
               int var7 = var4.hash;
               Class var8 = null;
               Float2ObjectConcurrentHashMap.TreeNode var9 = var3;

               int var10;
               Float2ObjectConcurrentHashMap.TreeNode var13;
               do {
                  float var12 = var9.key;
                  int var11 = var9.hash;
                  if (var9.hash > var7) {
                     var10 = -1;
                  } else if (var11 < var7) {
                     var10 = 1;
                  } else if ((var10 = Float.compare(var6, var12)) == 0) {
                     var10 = this.tieBreakOrder(var6, var12);
                  }

                  var13 = var9;
               } while ((var9 = var10 <= 0 ? var9.left : var9.right) != null);

               var4.parent = var13;
               if (var10 <= 0) {
                  var13.left = var4;
               } else {
                  var13.right = var4;
               }

               var3 = this.balanceInsertion(var3, var4);
            }

            var4 = var5;
         }

         this.root = var3;
         assert this.checkInvariants(this.root);
      }

      class="kw">protected class="kw">final void lockRoot() {
         if (!U.compareAndSwapInt(this, LOCKSTATE, 0, 1)) {
            this.contendedLock();
         }
      }

      class="kw">protected class="kw">final void unlockRoot() {
         this.lockState = 0;
      }

      class="kw">protected class="kw">final void contendedLock() {
         boolean var1 = false;

         while (true) {
            int var2 = this.lockState;
            if ((this.lockState & -3) == 0) {
               if (U.compareAndSwapInt(this, LOCKSTATE, var2, 1)) {
                  if (var1) {
                     this.waiter = null;
                  }

                  class="kw">return;
               }
            } else if ((var2 & 2) == 0) {
               if (U.compareAndSwapInt(this, LOCKSTATE, var2, var2 | 2)) {
                  var1 = true;
                  this.waiter = Thread.currentThread();
               }
            } else if (var1) {
               LockSupport.park(this);
            }
         }
      }

      @Override
      class="kw">protected class="kw">final Float2ObjectConcurrentHashMap.Node<V> find(int var1, float var2) {
         if (var2 != this.EMPTY) {
            Float2ObjectConcurrentHashMap.Node var3 = this.first;

            while (var3 != null) {
               int var4 = this.lockState;
               if ((this.lockState & 3) != 0) {
                  if (var3.hash == var1) {
                     float var5 = var3.key;
                     if (var3.key == var2 || var5 != this.EMPTY && var2 == var5) {
                        class="kw">return var3;
                     }
                  }

                  var3 = var3.next;
               } else if (U.compareAndSwapInt(this, LOCKSTATE, var4, var4 + 4)) {
                  Float2ObjectConcurrentHashMap.TreeNode var7;
                  try {
                     Float2ObjectConcurrentHashMap.TreeNode var6 = this.root;
                     var7 = this.root == null ? null : var6.findTreeNode(var1, var2, null);
                  } class="kw">finally {
                     if (U.getAndAddInt(this, LOCKSTATE, -4) == 6) {
                        Thread var10 = this.waiter;
                        if (this.waiter != null) {
                           LockSupport.unpark(var10);
                        }
                     }
                  }

                  class="kw">return var7;
               }
            }
         }

         class="kw">return null;
      }

      class="kw">protected class="kw">final Float2ObjectConcurrentHashMap.TreeNode<V> putTreeVal(int var1, float var2, V var3) {
         Class var4 = null;
         boolean var5 = false;
         Float2ObjectConcurrentHashMap.TreeNode var6 = this.root;

         while (true) {
            if (var6 == null) {
               this.first = this.root = new Float2ObjectConcurrentHashMap.TreeNode<>(this.EMPTY, var1, var2, var3, null, null);
            } else {
               int var8 = var6.hash;
               int var7;
               if (var6.hash > var1) {
                  var7 = -1;
               } else if (var8 < var1) {
                  var7 = 1;
               } else {
                  float var9 = var6.key;
                  if (var6.key == var2 || var9 != this.EMPTY && var2 == var9) {
                     class="kw">return var6;
                  }

                  if ((var7 = Float.compare(var2, var9)) == 0) {
                     if (!var5) {
                        var5 = true;
                        Float2ObjectConcurrentHashMap.TreeNode var11 = var6.left;
                        Float2ObjectConcurrentHashMap.TreeNode var10;
                        if (var6.left != null && (var10 = var11.findTreeNode(var1, var2, var4)) != null) {
                           class="kw">return var10;
                        }

                        var11 = var6.right;
                        if (var6.right != null && (var10 = var11.findTreeNode(var1, var2, var4)) != null) {
                           class="kw">return var10;
                        }
                     }

                     var7 = this.tieBreakOrder(var2, var9);
                  }
               }

               Float2ObjectConcurrentHashMap.TreeNode var16 = var6;
               if ((var6 = var7 <= 0 ? var6.left : var6.right) != null) {
                  class="kw">continue;
               }

               Float2ObjectConcurrentHashMap.TreeNode var12 = this.first;
               Float2ObjectConcurrentHashMap.TreeNode var18;
               this.first = var18 = new Float2ObjectConcurrentHashMap.TreeNode<>(this.EMPTY, var1, var2, var3, var12, var16);
               if (var12 != null) {
                  var12.prev = var18;
               }

               if (var7 <= 0) {
                  var16.left = var18;
               } else {
                  var16.right = var18;
               }

               if (!var16.red) {
                  var18.red = true;
               } else {
                  this.lockRoot();

                  try {
                     this.root = this.balanceInsertion(this.root, var18);
                  } class="kw">finally {
                     this.unlockRoot();
                  }
               }
            }

            assert this.checkInvariants(this.root);
            class="kw">return null;
         }
      }

      class="kw">protected class="kw">final boolean removeTreeNode(Float2ObjectConcurrentHashMap.TreeNode<V> var1) {
         Float2ObjectConcurrentHashMap.TreeNode var2 = (Float2ObjectConcurrentHashMap.TreeNode<V>)var1.next;
         Float2ObjectConcurrentHashMap.TreeNode var3 = var1.prev;
         if (var3 == null) {
            this.first = var2;
         } else {
            var3.next = var2;
         }

         if (var2 != null) {
            var2.prev = var3;
         }

         if (this.first == null) {
            this.root = null;
            class="kw">return true;
         }

         Float2ObjectConcurrentHashMap.TreeNode var4 = this.root;
         if (this.root != null && var4.right != null) {
            Float2ObjectConcurrentHashMap.TreeNode var5 = var4.left;
            if (var4.left != null && var5.left != null) {
               this.lockRoot();

               try {
                  Float2ObjectConcurrentHashMap.TreeNode var7 = var1.left;
                  Float2ObjectConcurrentHashMap.TreeNode var8 = var1.right;
                  Float2ObjectConcurrentHashMap.TreeNode var6;
                  if (var7 != null && var8 != null) {
                     Float2ObjectConcurrentHashMap.TreeNode var9 = var8;

                     while (true) {
                        Float2ObjectConcurrentHashMap.TreeNode var10 = var9.left;
                        if (var9.left == null) {
                           boolean var11 = var9.red;
                           var9.red = var1.red;
                           var1.red = var11;
                           Float2ObjectConcurrentHashMap.TreeNode var12 = var9.right;
                           Float2ObjectConcurrentHashMap.TreeNode var13 = var1.parent;
                           if (var9 == var8) {
                              var1.parent = var9;
                              var9.right = var1;
                           } else {
                              Float2ObjectConcurrentHashMap.TreeNode var14 = var9.parent;
                              if ((var1.parent = var14) != null) {
                                 if (var9 == var14.left) {
                                    var14.left = var1;
                                 } else {
                                    var14.right = var1;
                                 }
                              }

                              if ((var9.right = var8) != null) {
                                 var8.parent = var9;
                              }
                           }

                           var1.left = null;
                           if ((var1.right = var12) != null) {
                              var12.parent = var1;
                           }

                           if ((var9.left = var7) != null) {
                              var7.parent = var9;
                           }

                           if ((var9.parent = var13) == null) {
                              var4 = var9;
                           } else if (var1 == var13.left) {
                              var13.left = var9;
                           } else {
                              var13.right = var9;
                           }

                           if (var12 != null) {
                              var6 = var12;
                           } else {
                              var6 = var1;
                           }
                           break;
                        }

                        var9 = var10;
                     }
                  } else if (var7 != null) {
                     var6 = var7;
                  } else if (var8 != null) {
                     var6 = var8;
                  } else {
                     var6 = var1;
                  }

                  if (var6 != var1) {
                     Float2ObjectConcurrentHashMap.TreeNode var18 = var6.parent = var1.parent;
                     if (var18 == null) {
                        var4 = var6;
                     } else if (var1 == var18.left) {
                        var18.left = var6;
                     } else {
                        var18.right = var6;
                     }

                     var1.left = var1.right = var1.parent = null;
                  }

                  this.root = var1.red ? var4 : this.balanceDeletion(var4, var6);
                  if (var1 == var6) {
                     Float2ObjectConcurrentHashMap.TreeNode var19 = var1.parent;
                     if (var1.parent != null) {
                        if (var1 == var19.left) {
                           var19.left = null;
                        } else if (var1 == var19.right) {
                           var19.right = null;
                        }

                        var1.parent = null;
                     }
                  }
               } class="kw">finally {
                  this.unlockRoot();
               }

               assert this.checkInvariants(this.root);
               class="kw">return false;
            }
         }

         class="kw">return true;
      }

      class="kw">protected <V> Float2ObjectConcurrentHashMap.TreeNode<V> rotateLeft(
         Float2ObjectConcurrentHashMap.TreeNode<V> var1, Float2ObjectConcurrentHashMap.TreeNode<V> var2
      ) {
         if (var2 != null) {
            Float2ObjectConcurrentHashMap.TreeNode var3 = var2.right;
            if (var2.right != null) {
               Float2ObjectConcurrentHashMap.TreeNode var5;
               if ((var5 = var2.right = var3.left) != null) {
                  var5.parent = var2;
               }

               Float2ObjectConcurrentHashMap.TreeNode var4;
               if ((var4 = var3.parent = var2.parent) == null) {
                  var1 = var3;
                  var3.red = false;
               } else if (var4.left == var2) {
                  var4.left = var3;
               } else {
                  var4.right = var3;
               }

               var3.left = var2;
               var2.parent = var3;
            }
         }

         class="kw">return var1;
      }

      class="kw">protected <V> Float2ObjectConcurrentHashMap.TreeNode<V> rotateRight(
         Float2ObjectConcurrentHashMap.TreeNode<V> var1, Float2ObjectConcurrentHashMap.TreeNode<V> var2
      ) {
         if (var2 != null) {
            Float2ObjectConcurrentHashMap.TreeNode var3 = var2.left;
            if (var2.left != null) {
               Float2ObjectConcurrentHashMap.TreeNode var5;
               if ((var5 = var2.left = var3.right) != null) {
                  var5.parent = var2;
               }

               Float2ObjectConcurrentHashMap.TreeNode var4;
               if ((var4 = var3.parent = var2.parent) == null) {
                  var1 = var3;
                  var3.red = false;
               } else if (var4.right == var2) {
                  var4.right = var3;
               } else {
                  var4.left = var3;
               }

               var3.right = var2;
               var2.parent = var3;
            }
         }

         class="kw">return var1;
      }

      class="kw">protected <V> Float2ObjectConcurrentHashMap.TreeNode<V> balanceInsertion(
         Float2ObjectConcurrentHashMap.TreeNode<V> var1, Float2ObjectConcurrentHashMap.TreeNode<V> var2
      ) {
         var2.red = true;

         while (true) {
            Float2ObjectConcurrentHashMap.TreeNode var3 = var2.parent;
            if (var2.parent == null) {
               var2.red = false;
               class="kw">return var2;
            }

            if (!var3.red) {
               break;
            }

            Float2ObjectConcurrentHashMap.TreeNode var4 = var3.parent;
            if (var3.parent == null) {
               break;
            }

            Float2ObjectConcurrentHashMap.TreeNode var5 = var4.left;
            if (var3 == var4.left) {
               Float2ObjectConcurrentHashMap.TreeNode var6 = var4.right;
               if (var4.right != null && var6.red) {
                  var6.red = false;
                  var3.red = false;
                  var4.red = true;
                  var2 = var4;
               } else {
                  if (var2 == var3.right) {
                     var2 = var3;
                     var1 = this.rotateLeft(var1, var3);
                     var3 = var2.parent;
                     var4 = var2.parent == null ? null : var3.parent;
                  }

                  if (var3 != null) {
                     var3.red = false;
                     if (var4 != null) {
                        var4.red = true;
                        var1 = this.rotateRight(var1, var4);
                     }
                  }
               }
            } else if (var5 != null && var5.red) {
               var5.red = false;
               var3.red = false;
               var4.red = true;
               var2 = var4;
            } else {
               if (var2 == var3.left) {
                  var2 = var3;
                  var1 = this.rotateRight(var1, var3);
                  var3 = var2.parent;
                  var4 = var2.parent == null ? null : var3.parent;
               }

               if (var3 != null) {
                  var3.red = false;
                  if (var4 != null) {
                     var4.red = true;
                     var1 = this.rotateLeft(var1, var4);
                  }
               }
            }
         }

         class="kw">return var1;
      }

      class="kw">protected <V> Float2ObjectConcurrentHashMap.TreeNode<V> balanceDeletion(
         Float2ObjectConcurrentHashMap.TreeNode<V> var1, Float2ObjectConcurrentHashMap.TreeNode<V> var2
      ) {
         while (var2 != null && var2 != var1) {
            Float2ObjectConcurrentHashMap.TreeNode var3 = var2.parent;
            if (var2.parent == null) {
               var2.red = false;
               class="kw">return var2;
            }

            if (var2.red) {
               var2.red = false;
               class="kw">return var1;
            }

            Float2ObjectConcurrentHashMap.TreeNode var4 = var3.left;
            if (var3.left == var2) {
               Float2ObjectConcurrentHashMap.TreeNode var5 = var3.right;
               if (var3.right != null && var5.red) {
                  var5.red = false;
                  var3.red = true;
                  var1 = this.rotateLeft(var1, var3);
                  var3 = var2.parent;
                  var5 = var2.parent == null ? null : var3.right;
               }

               if (var5 == null) {
                  var2 = var3;
               } else {
                  Float2ObjectConcurrentHashMap.TreeNode var9 = var5.left;
                  Float2ObjectConcurrentHashMap.TreeNode var10 = var5.right;
                  if (var10 != null && var10.red || var9 != null && var9.red) {
                     if (var10 == null || !var10.red) {
                        if (var9 != null) {
                           var9.red = false;
                        }

                        var5.red = true;
                        var1 = this.rotateRight(var1, var5);
                        var3 = var2.parent;
                        var5 = var2.parent == null ? null : var3.right;
                     }

                     if (var5 != null) {
                        var5.red = var3 == null ? false : var3.red;
                        var10 = var5.right;
                        if (var5.right != null) {
                           var10.red = false;
                        }
                     }

                     if (var3 != null) {
                        var3.red = false;
                        var1 = this.rotateLeft(var1, var3);
                     }

                     var2 = var1;
                  } else {
                     var5.red = true;
                     var2 = var3;
                  }
               }
            } else {
               if (var4 != null && var4.red) {
                  var4.red = false;
                  var3.red = true;
                  var1 = this.rotateRight(var1, var3);
                  var3 = var2.parent;
                  var4 = var2.parent == null ? null : var3.left;
               }

               if (var4 == null) {
                  var2 = var3;
               } else {
                  Float2ObjectConcurrentHashMap.TreeNode var6 = var4.left;
                  Float2ObjectConcurrentHashMap.TreeNode var7 = var4.right;
                  if (var6 != null && var6.red || var7 != null && var7.red) {
                     if (var6 == null || !var6.red) {
                        if (var7 != null) {
                           var7.red = false;
                        }

                        var4.red = true;
                        var1 = this.rotateLeft(var1, var4);
                        var3 = var2.parent;
                        var4 = var2.parent == null ? null : var3.left;
                     }

                     if (var4 != null) {
                        var4.red = var3 == null ? false : var3.red;
                        var6 = var4.left;
                        if (var4.left != null) {
                           var6.red = false;
                        }
                     }

                     if (var3 != null) {
                        var3.red = false;
                        var1 = this.rotateRight(var1, var3);
                     }

                     var2 = var1;
                  } else {
                     var4.red = true;
                     var2 = var3;
                  }
               }
            }
         }

         class="kw">return var1;
      }

      class="kw">protected <V> boolean checkInvariants(Float2ObjectConcurrentHashMap.TreeNode<V> var1) {
         Float2ObjectConcurrentHashMap.TreeNode var2 = var1.parent;
         Float2ObjectConcurrentHashMap.TreeNode var3 = var1.left;
         Float2ObjectConcurrentHashMap.TreeNode var4 = var1.right;
         Float2ObjectConcurrentHashMap.TreeNode var5 = var1.prev;
         Float2ObjectConcurrentHashMap.TreeNode var6 = (Float2ObjectConcurrentHashMap.TreeNode<V>)var1.next;
         if (var5 != null && var5.next != var1) {
            class="kw">return false;
         }

         if (var6 != null && var6.prev != var1) {
            class="kw">return false;
         }

         if (var2 != null && var1 != var2.left && var1 != var2.right) {
            class="kw">return false;
         }

         if (var3 == null || var3.parent == var1 && var3.hash <= var1.hash) {
            if (var4 == null || var4.parent == var1 && var4.hash >= var1.hash) {
               if (var1.red && var3 != null && var3.red && var4 != null && var4.red) {
                  class="kw">return false;
               } else {
                  class="kw">return var3 != null && !this.checkInvariants(var3) ? false : var4 == null || this.checkInvariants(var4);
               }
            } else {
               class="kw">return false;
            }
         } else {
            class="kw">return false;
         }
      }

      class="kw">static {
         try {
            Field var0 = Unsafe.class.getDeclaredField("theUnsafe");
            var0.setAccessible(true);
            U = (Unsafe)var0.get(null);
            Class var1 = Float2ObjectConcurrentHashMap.TreeBin.class;
            LOCKSTATE = U.objectFieldOffset(var1.getDeclaredField("lockState"));
         } catch (Exception var2) {
            throw new Error(var2);
         }
      }
   }

   class="kw">protected class="kw">static class="kw">final class TreeNode<V> class="kw">extends Float2ObjectConcurrentHashMap.Node<V> {
      class="kw">public Float2ObjectConcurrentHashMap.TreeNode<V> parent;
      class="kw">public Float2ObjectConcurrentHashMap.TreeNode<V> left;
      class="kw">public Float2ObjectConcurrentHashMap.TreeNode<V> right;
      class="kw">public Float2ObjectConcurrentHashMap.TreeNode<V> prev;
      class="kw">public boolean red;

      class="kw">public TreeNode(float var1, int var2, float var3, V var4, Float2ObjectConcurrentHashMap.Node<V> var5, Float2ObjectConcurrentHashMap.TreeNode<V> var6) {
         super(var1, var2, var3, var4, var5);
         this.parent = var6;
      }

      @Override
      class="kw">protected Float2ObjectConcurrentHashMap.Node<V> find(int var1, float var2) {
         class="kw">return this.findTreeNode(var1, var2, null);
      }

      class="kw">protected class="kw">final Float2ObjectConcurrentHashMap.TreeNode<V> findTreeNode(int var1, float var2, Class<?> var3) {
         if (var2 != this.EMPTY) {
            Float2ObjectConcurrentHashMap.TreeNode var4 = this;

            do {
               Float2ObjectConcurrentHashMap.TreeNode var9 = var4.left;
               Float2ObjectConcurrentHashMap.TreeNode var10 = var4.right;
               int var5 = var4.hash;
               if (var4.hash > var1) {
                  var4 = var9;
               } else if (var5 < var1) {
                  var4 = var10;
               } else {
                  float var7 = var4.key;
                  if (var4.key == var2 || var7 != this.EMPTY && var2 == var7) {
                     class="kw">return var4;
                  }

                  if (var9 == null) {
                     var4 = var10;
                  } else if (var10 == null) {
                     var4 = var9;
                  } else {
                     int var6;
                     if ((var6 = Float.compare(var2, var7)) != 0) {
                        var4 = var6 < 0 ? var9 : var10;
                     } else {
                        Float2ObjectConcurrentHashMap.TreeNode var8;
                        if ((var8 = var10.findTreeNode(var1, var2, var3)) != null) {
                           class="kw">return var8;
                        }

                        var4 = var9;
                     }
                  }
               }
            } while (var4 != null);
         }

         class="kw">return null;
      }
   }

   class="kw">protected class="kw">static class="kw">final class ValueIterator<V> class="kw">extends Float2ObjectConcurrentHashMap.BaseIterator<V> class="kw">implements ObjectIterator<V>, Enumeration<V> {
      class="kw">public ValueIterator(Float2ObjectConcurrentHashMap.Node<V>[] var1, int var2, int var3, int var4, Float2ObjectConcurrentHashMap<V> var5) {
         super(var1, var2, var3, var4, var5);
      }

      class="kw">public class="kw">final V next() {
         Float2ObjectConcurrentHashMap.Node var1 = this.next;
         if (this.next == null) {
            throw new NoSuchElementException();
         }

         Object var2 = var1.val;
         this.lastReturned = var1;
         this.advance();
         class="kw">return var2;
      }

      @Override
      class="kw">public class="kw">final V nextElement() {
         class="kw">return this.next();
      }
   }

   class="kw">protected class="kw">static class="kw">final class ValueSpliterator<V> class="kw">extends Float2ObjectConcurrentHashMap.Traverser<V> class="kw">implements ObjectSpliterator<V> {
      class="kw">public long est;

      class="kw">public ValueSpliterator(Float2ObjectConcurrentHashMap.Node<V>[] var1, int var2, int var3, int var4, long var5) {
         super(var1, var2, var3, var4);
         this.est = var5;
      }

      class="kw">public ObjectSpliterator<V> trySplit() {
         int var1 = this.baseIndex;
         int var2 = this.baseLimit;
         int var3;
         class="kw">return (var3 = this.baseIndex + this.baseLimit >>> 1) <= var1
            ? null
            : new Float2ObjectConcurrentHashMap.ValueSpliterator<>(this.tab, this.baseSize, this.baseLimit = var3, var2, this.est >>>= 1);
      }

      class="kw">public void forEachRemaining(Consumer<? super V> var1) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node var2;
         while ((var2 = this.advance()) != null) {
            var1.accept(var2.val);
         }
      }

      class="kw">public boolean tryAdvance(Consumer<? super V> var1) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node var2;
         if ((var2 = this.advance()) == null) {
            class="kw">return false;
         }

         var1.accept(var2.val);
         class="kw">return true;
      }

      class="kw">public long estimateSize() {
         class="kw">return this.est;
      }

      class="kw">public int characteristics() {
         class="kw">return 4352;
      }
   }

   class="kw">protected class="kw">static class="kw">final class ValuesView<V> class="kw">extends Float2ObjectConcurrentHashMap.CollectionView<V, V> class="kw">implements FastCollection<V>, Serializable {
      class="kw">public class="kw">static class="kw">final long serialVersionUID = 2249069246763182397L;

      class="kw">public ValuesView(Float2ObjectConcurrentHashMap<V> var1) {
         super(var1);
      }

      @Override
      class="kw">public class="kw">final boolean contains(Object var1) {
         class="kw">return this.map.containsValue(var1);
      }

      @Override
      class="kw">public class="kw">final boolean remove(Object var1) {
         if (var1 != null) {
            Iterator var2 = this.iterator();

            while (var2.hasNext()) {
               if (var1.equals(var2.next())) {
                  var2.remove();
                  class="kw">return true;
               }
            }
         }

         class="kw">return false;
      }

      @Override
      class="kw">public class="kw">final ObjectIterator<V> iterator() {
         Float2ObjectConcurrentHashMap var1 = this.map;
         Float2ObjectConcurrentHashMap.Node[] var2 = var1.table;
         int var3 = var1.table == null ? 0 : var2.length;
         class="kw">return new Float2ObjectConcurrentHashMap.ValueIterator<>(var2, var3, 0, var3, var1);
      }

      @Override
      class="kw">public class="kw">final boolean add(V var1) {
         throw new UnsupportedOperationException();
      }

      @Override
      class="kw">public class="kw">final boolean addAll(Collection<? class="kw">extends V> var1) {
         throw new UnsupportedOperationException();
      }

      class="kw">public ObjectSpliterator<V> spliterator() {
         Float2ObjectConcurrentHashMap var2 = this.map;
         long var3 = var2.sumCount();
         Float2ObjectConcurrentHashMap.Node[] var1 = var2.table;
         int var5 = var2.table == null ? 0 : var1.length;
         class="kw">return new Float2ObjectConcurrentHashMap.ValueSpliterator<>(var1, var5, 0, var5, var3 < 0L ? 0L : var3);
      }

      @Override
      class="kw">public void forEach(Consumer<? super V> var1) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node[] var2 = this.map.table;
         if (this.map.table != null) {
            Float2ObjectConcurrentHashMap.Node[] var3 = var2;
            Float2ObjectConcurrentHashMap.Node var4 = null;
            Float2ObjectConcurrentHashMap.TableStack var5 = null;
            Float2ObjectConcurrentHashMap.TableStack var6 = null;
            int var7 = 0;
            int var8 = 0;
            int var9 = var2.length;
            int var10 = var2.length;

            while (true) {
               Float2ObjectConcurrentHashMap.Node var11 = null;
               var11 = var4;
               if (var4 != null) {
                  var11 = var11.next;
               }

               label78: {
                  while (true) {
                     if (var11 != null) {
                        var4 = var11;
                        break label78;
                     }

                     if (var8 >= var9) {
                        break;
                     }

                     Float2ObjectConcurrentHashMap.Node[] var12 = var3;
                     if (var3 == null) {
                        break;
                     }

                     int var14;
                     int var10000 = var14 = var12.length;
                     int var13 = var7;
                     if (var10000 <= var7 || var13 < 0) {
                        break;
                     }

                     if ((var11 = Float2ObjectConcurrentHashMap.tabAt(var12, var13)) != null && var11.hash < 0) {
                        if (var11 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                           var3 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var11).nextTable;
                           var11 = null;
                           Float2ObjectConcurrentHashMap.TableStack var19 = var6;
                           if (var19 != null) {
                              var6 = var19.next;
                           } else {
                              var19 = new Float2ObjectConcurrentHashMap.TableStack<>();
                           }

                           var19.tab = var12;
                           var19.length = var14;
                           var19.index = var13;
                           var19.next = var5;
                           var5 = var19;
                           class="kw">continue;
                        }

                        if (var11 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                           var11 = ((Float2ObjectConcurrentHashMap.TreeBin)var11).first;
                        } else {
                           var11 = null;
                        }
                     }

                     if (var5 == null) {
                        if ((var7 = var13 + var10) >= var14) {
                           var7 = ++var8;
                        }
                     } else {
                        while (true) {
                           Float2ObjectConcurrentHashMap.TableStack var15 = var5;
                           if (var5 != null) {
                              int var16 = var15.length;
                              if ((var7 += var15.length) >= var14) {
                                 var14 = var16;
                                 var7 = var15.index;
                                 var3 = var15.tab;
                                 var15.tab = null;
                                 Float2ObjectConcurrentHashMap.TableStack var17 = var15.next;
                                 var15.next = var6;
                                 var5 = var17;
                                 var6 = var15;
                                 class="kw">continue;
                              }
                           }

                           if (var15 == null && (var7 += var10) >= var14) {
                              var7 = ++var8;
                           }
                           break;
                        }
                     }
                  }

                  var4 = null;
               }

               if (var11 == null) {
                  break;
               }

               var1.accept(var11.val);
            }
         }
      }

      @Override
      class="kw">public <A, B, C, D> void forEach(
         FastCollection.FastConsumerD9<? super V, A, B, C, D> var1,
         A var2,
         double var3,
         double var5,
         double var7,
         double var9,
         double var11,
         double var13,
         double var15,
         double var17,
         double var19,
         B var21,
         C var22,
         D var23
      ) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node[] var24 = this.map.table;
         if (this.map.table != null) {
            Float2ObjectConcurrentHashMap.Node[] var25 = var24;
            Float2ObjectConcurrentHashMap.Node var26 = null;
            Float2ObjectConcurrentHashMap.TableStack var27 = null;
            Float2ObjectConcurrentHashMap.TableStack var28 = null;
            int var29 = 0;
            int var30 = 0;
            int var31 = var24.length;
            int var32 = var24.length;

            while (true) {
               Float2ObjectConcurrentHashMap.Node var33 = null;
               var33 = var26;
               if (var26 != null) {
                  var33 = var33.next;
               }

               label78: {
                  while (true) {
                     if (var33 != null) {
                        var26 = var33;
                        break label78;
                     }

                     if (var30 >= var31) {
                        break;
                     }

                     Float2ObjectConcurrentHashMap.Node[] var34 = var25;
                     if (var25 == null) {
                        break;
                     }

                     int var36;
                     int var10000 = var36 = var34.length;
                     int var35 = var29;
                     if (var10000 <= var29 || var35 < 0) {
                        break;
                     }

                     if ((var33 = Float2ObjectConcurrentHashMap.tabAt(var34, var35)) != null && var33.hash < 0) {
                        if (var33 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                           var25 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var33).nextTable;
                           var33 = null;
                           Float2ObjectConcurrentHashMap.TableStack var41 = var28;
                           if (var41 != null) {
                              var28 = var41.next;
                           } else {
                              var41 = new Float2ObjectConcurrentHashMap.TableStack<>();
                           }

                           var41.tab = var34;
                           var41.length = var36;
                           var41.index = var35;
                           var41.next = var27;
                           var27 = var41;
                           class="kw">continue;
                        }

                        if (var33 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                           var33 = ((Float2ObjectConcurrentHashMap.TreeBin)var33).first;
                        } else {
                           var33 = null;
                        }
                     }

                     if (var27 == null) {
                        if ((var29 = var35 + var32) >= var36) {
                           var29 = ++var30;
                        }
                     } else {
                        while (true) {
                           Float2ObjectConcurrentHashMap.TableStack var37 = var27;
                           if (var27 != null) {
                              int var38 = var37.length;
                              if ((var29 += var37.length) >= var36) {
                                 var36 = var38;
                                 var29 = var37.index;
                                 var25 = var37.tab;
                                 var37.tab = null;
                                 Float2ObjectConcurrentHashMap.TableStack var39 = var37.next;
                                 var37.next = var28;
                                 var27 = var39;
                                 var28 = var37;
                                 class="kw">continue;
                              }
                           }

                           if (var37 == null && (var29 += var32) >= var36) {
                              var29 = ++var30;
                           }
                           break;
                        }
                     }
                  }

                  var26 = null;
               }

               if (var33 == null) {
                  break;
               }

               var1.accept(var33.val, var2, var3, var5, var7, var9, var11, var13, var15, var17, var19, var21, var22, var23);
            }
         }
      }

      @Override
      class="kw">public <A, B, C, D> void forEach(
         FastCollection.FastConsumerD6<? super V, A, B, C, D> var1,
         A var2,
         double var3,
         double var5,
         double var7,
         double var9,
         double var11,
         double var13,
         B var15,
         C var16,
         D var17
      ) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node[] var18 = this.map.table;
         if (this.map.table != null) {
            Float2ObjectConcurrentHashMap.Node[] var19 = var18;
            Float2ObjectConcurrentHashMap.Node var20 = null;
            Float2ObjectConcurrentHashMap.TableStack var21 = null;
            Float2ObjectConcurrentHashMap.TableStack var22 = null;
            int var23 = 0;
            int var24 = 0;
            int var25 = var18.length;
            int var26 = var18.length;

            while (true) {
               Float2ObjectConcurrentHashMap.Node var27 = null;
               var27 = var20;
               if (var20 != null) {
                  var27 = var27.next;
               }

               label78: {
                  while (true) {
                     if (var27 != null) {
                        var20 = var27;
                        break label78;
                     }

                     if (var24 >= var25) {
                        break;
                     }

                     Float2ObjectConcurrentHashMap.Node[] var28 = var19;
                     if (var19 == null) {
                        break;
                     }

                     int var30;
                     int var10000 = var30 = var28.length;
                     int var29 = var23;
                     if (var10000 <= var23 || var29 < 0) {
                        break;
                     }

                     if ((var27 = Float2ObjectConcurrentHashMap.tabAt(var28, var29)) != null && var27.hash < 0) {
                        if (var27 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                           var19 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var27).nextTable;
                           var27 = null;
                           Float2ObjectConcurrentHashMap.TableStack var35 = var22;
                           if (var35 != null) {
                              var22 = var35.next;
                           } else {
                              var35 = new Float2ObjectConcurrentHashMap.TableStack<>();
                           }

                           var35.tab = var28;
                           var35.length = var30;
                           var35.index = var29;
                           var35.next = var21;
                           var21 = var35;
                           class="kw">continue;
                        }

                        if (var27 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                           var27 = ((Float2ObjectConcurrentHashMap.TreeBin)var27).first;
                        } else {
                           var27 = null;
                        }
                     }

                     if (var21 == null) {
                        if ((var23 = var29 + var26) >= var30) {
                           var23 = ++var24;
                        }
                     } else {
                        while (true) {
                           Float2ObjectConcurrentHashMap.TableStack var31 = var21;
                           if (var21 != null) {
                              int var32 = var31.length;
                              if ((var23 += var31.length) >= var30) {
                                 var30 = var32;
                                 var23 = var31.index;
                                 var19 = var31.tab;
                                 var31.tab = null;
                                 Float2ObjectConcurrentHashMap.TableStack var33 = var31.next;
                                 var31.next = var22;
                                 var21 = var33;
                                 var22 = var31;
                                 class="kw">continue;
                              }
                           }

                           if (var31 == null && (var23 += var26) >= var30) {
                              var23 = ++var24;
                           }
                           break;
                        }
                     }
                  }

                  var20 = null;
               }

               if (var27 == null) {
                  break;
               }

               var1.accept(var27.val, var2, var3, var5, var7, var9, var11, var13, var15, var16, var17);
            }
         }
      }

      @Override
      class="kw">public void forEachWithFloat(FastCollection.FastConsumerF<? super V> var1, float var2) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node[] var3 = this.map.table;
         if (this.map.table != null) {
            Float2ObjectConcurrentHashMap.Node[] var4 = var3;
            Float2ObjectConcurrentHashMap.Node var5 = null;
            Float2ObjectConcurrentHashMap.TableStack var6 = null;
            Float2ObjectConcurrentHashMap.TableStack var7 = null;
            int var8 = 0;
            int var9 = 0;
            int var10 = var3.length;
            int var11 = var3.length;

            while (true) {
               Float2ObjectConcurrentHashMap.Node var12 = null;
               var12 = var5;
               if (var5 != null) {
                  var12 = var12.next;
               }

               label78: {
                  while (true) {
                     if (var12 != null) {
                        var5 = var12;
                        break label78;
                     }

                     if (var9 >= var10) {
                        break;
                     }

                     Float2ObjectConcurrentHashMap.Node[] var13 = var4;
                     if (var4 == null) {
                        break;
                     }

                     int var15;
                     int var10000 = var15 = var13.length;
                     int var14 = var8;
                     if (var10000 <= var8 || var14 < 0) {
                        break;
                     }

                     if ((var12 = Float2ObjectConcurrentHashMap.tabAt(var13, var14)) != null && var12.hash < 0) {
                        if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                           var4 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var12).nextTable;
                           var12 = null;
                           Float2ObjectConcurrentHashMap.TableStack var20 = var7;
                           if (var20 != null) {
                              var7 = var20.next;
                           } else {
                              var20 = new Float2ObjectConcurrentHashMap.TableStack<>();
                           }

                           var20.tab = var13;
                           var20.length = var15;
                           var20.index = var14;
                           var20.next = var6;
                           var6 = var20;
                           class="kw">continue;
                        }

                        if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                           var12 = ((Float2ObjectConcurrentHashMap.TreeBin)var12).first;
                        } else {
                           var12 = null;
                        }
                     }

                     if (var6 == null) {
                        if ((var8 = var14 + var11) >= var15) {
                           var8 = ++var9;
                        }
                     } else {
                        while (true) {
                           Float2ObjectConcurrentHashMap.TableStack var16 = var6;
                           if (var6 != null) {
                              int var17 = var16.length;
                              if ((var8 += var16.length) >= var15) {
                                 var15 = var17;
                                 var8 = var16.index;
                                 var4 = var16.tab;
                                 var16.tab = null;
                                 Float2ObjectConcurrentHashMap.TableStack var18 = var16.next;
                                 var16.next = var7;
                                 var6 = var18;
                                 var7 = var16;
                                 class="kw">continue;
                              }
                           }

                           if (var16 == null && (var8 += var11) >= var15) {
                              var8 = ++var9;
                           }
                           break;
                        }
                     }
                  }

                  var5 = null;
               }

               if (var12 == null) {
                  break;
               }

               var1.accept(var12.val, var2);
            }
         }
      }

      @Override
      class="kw">public void forEachWithInt(FastCollection.FastConsumerI<? super V> var1, int var2) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node[] var3 = this.map.table;
         if (this.map.table != null) {
            Float2ObjectConcurrentHashMap.Node[] var4 = var3;
            Float2ObjectConcurrentHashMap.Node var5 = null;
            Float2ObjectConcurrentHashMap.TableStack var6 = null;
            Float2ObjectConcurrentHashMap.TableStack var7 = null;
            int var8 = 0;
            int var9 = 0;
            int var10 = var3.length;
            int var11 = var3.length;

            while (true) {
               Float2ObjectConcurrentHashMap.Node var12 = null;
               var12 = var5;
               if (var5 != null) {
                  var12 = var12.next;
               }

               label78: {
                  while (true) {
                     if (var12 != null) {
                        var5 = var12;
                        break label78;
                     }

                     if (var9 >= var10) {
                        break;
                     }

                     Float2ObjectConcurrentHashMap.Node[] var13 = var4;
                     if (var4 == null) {
                        break;
                     }

                     int var15;
                     int var10000 = var15 = var13.length;
                     int var14 = var8;
                     if (var10000 <= var8 || var14 < 0) {
                        break;
                     }

                     if ((var12 = Float2ObjectConcurrentHashMap.tabAt(var13, var14)) != null && var12.hash < 0) {
                        if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                           var4 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var12).nextTable;
                           var12 = null;
                           Float2ObjectConcurrentHashMap.TableStack var20 = var7;
                           if (var20 != null) {
                              var7 = var20.next;
                           } else {
                              var20 = new Float2ObjectConcurrentHashMap.TableStack<>();
                           }

                           var20.tab = var13;
                           var20.length = var15;
                           var20.index = var14;
                           var20.next = var6;
                           var6 = var20;
                           class="kw">continue;
                        }

                        if (var12 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                           var12 = ((Float2ObjectConcurrentHashMap.TreeBin)var12).first;
                        } else {
                           var12 = null;
                        }
                     }

                     if (var6 == null) {
                        if ((var8 = var14 + var11) >= var15) {
                           var8 = ++var9;
                        }
                     } else {
                        while (true) {
                           Float2ObjectConcurrentHashMap.TableStack var16 = var6;
                           if (var6 != null) {
                              int var17 = var16.length;
                              if ((var8 += var16.length) >= var15) {
                                 var15 = var17;
                                 var8 = var16.index;
                                 var4 = var16.tab;
                                 var16.tab = null;
                                 Float2ObjectConcurrentHashMap.TableStack var18 = var16.next;
                                 var16.next = var7;
                                 var6 = var18;
                                 var7 = var16;
                                 class="kw">continue;
                              }
                           }

                           if (var16 == null && (var8 += var11) >= var15) {
                              var8 = ++var9;
                           }
                           break;
                        }
                     }
                  }

                  var5 = null;
               }

               if (var12 == null) {
                  break;
               }

               var1.accept(var12.val, var2);
            }
         }
      }

      @Override
      class="kw">public void forEachWithLong(FastCollection.FastConsumerL<? super V> var1, long var2) {
         if (var1 == null) {
            throw new NullPointerException();
         }

         Float2ObjectConcurrentHashMap.Node[] var4 = this.map.table;
         if (this.map.table != null) {
            Float2ObjectConcurrentHashMap.Node[] var5 = var4;
            Float2ObjectConcurrentHashMap.Node var6 = null;
            Float2ObjectConcurrentHashMap.TableStack var7 = null;
            Float2ObjectConcurrentHashMap.TableStack var8 = null;
            int var9 = 0;
            int var10 = 0;
            int var11 = var4.length;
            int var12 = var4.length;

            while (true) {
               Float2ObjectConcurrentHashMap.Node var13 = null;
               var13 = var6;
               if (var6 != null) {
                  var13 = var13.next;
               }

               label78: {
                  while (true) {
                     if (var13 != null) {
                        var6 = var13;
                        break label78;
                     }

                     if (var10 >= var11) {
                        break;
                     }

                     Float2ObjectConcurrentHashMap.Node[] var14 = var5;
                     if (var5 == null) {
                        break;
                     }

                     int var16;
                     int var10000 = var16 = var14.length;
                     int var15 = var9;
                     if (var10000 <= var9 || var15 < 0) {
                        break;
                     }

                     if ((var13 = Float2ObjectConcurrentHashMap.tabAt(var14, var15)) != null && var13.hash < 0) {
                        if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.ForwardingNode) {
                           var5 = ((Float2ObjectConcurrentHashMap.ForwardingNode)var13).nextTable;
                           var13 = null;
                           Float2ObjectConcurrentHashMap.TableStack var21 = var8;
                           if (var21 != null) {
                              var8 = var21.next;
                           } else {
                              var21 = new Float2ObjectConcurrentHashMap.TableStack<>();
                           }

                           var21.tab = var14;
                           var21.length = var16;
                           var21.index = var15;
                           var21.next = var7;
                           var7 = var21;
                           class="kw">continue;
                        }

                        if (var13 class="kw">instanceof Float2ObjectConcurrentHashMap.TreeBin) {
                           var13 = ((Float2ObjectConcurrentHashMap.TreeBin)var13).first;
                        } else {
                           var13 = null;
                        }
                     }

                     if (var7 == null) {
                        if ((var9 = var15 + var12) >= var16) {
                           var9 = ++var10;
                        }
                     } else {
                        while (true) {
                           Float2ObjectConcurrentHashMap.TableStack var17 = var7;
                           if (var7 != null) {
                              int var18 = var17.length;
                              if ((var9 += var17.length) >= var16) {
                                 var16 = var18;
                                 var9 = var17.index;
                                 var5 = var17.tab;
                                 var17.tab = null;
                                 Float2ObjectConcurrentHashMap.TableStack var19 = var17.next;
                                 var17.next = var8;
                                 var7 = var19;
                                 var8 = var17;
                                 class="kw">continue;
                              }
                           }

                           if (var17 == null && (var9 += var12) >= var16) {
                              var9 = ++var10;
                           }
                           break;
                        }
                     }
                  }

                  var6 = null;
               }

               if (var13 == null) {
                  break;
               }

               var1.accept(var13.val, var2);
            }
         }
      }
   }
}