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<?php |
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namespace MabeEnum; |
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use Countable; |
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use Iterator; |
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use InvalidArgumentException; |
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/** |
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* A set of enumerators of the given enumeration (EnumSet<T>) |
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* based on an integer or binary bitset depending of given enumeration size. |
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* |
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* @link http://github.com/marc-mabe/php-enum for the canonical source repository |
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* @copyright Copyright (c) 2017 Marc Bennewitz |
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* @license http://github.com/marc-mabe/php-enum/blob/master/LICENSE.txt New BSD License |
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*/ |
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class EnumSet implements Iterator, Countable |
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{ |
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/** |
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* The classname of the Enumeration |
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* @var string |
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*/ |
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private $enumeration; |
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/** |
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* Ordinal number of current iterator position |
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* @var int |
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*/ |
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private $ordinal = 0; |
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/** |
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* Highest possible ordinal number |
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* @var int |
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*/ |
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private $ordinalMax; |
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/** |
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* Integer or binary (little endian) bitset |
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* @var int|string |
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*/ |
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private $bitset = 0; |
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/**#@+ |
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* Defines private method names to be called depended of how the bitset type was set too. |
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* ... Integer or binary bitset. |
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* ... *Int or *Bin method |
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* |
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* @var string |
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*/ |
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private $fnDoRewind = 'doRewindInt'; |
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private $fnDoCount = 'doCountInt'; |
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private $fnDoGetOrdinals = 'doGetOrdinalsInt'; |
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private $fnDoGetBit = 'doGetBitInt'; |
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private $fnDoSetBit = 'doSetBitInt'; |
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private $fnDoUnsetBit = 'doUnsetBitInt'; |
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private $fnDoGetBinaryBitsetLe = 'doGetBinaryBitsetLeInt'; |
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private $fnDoSetBinaryBitsetLe = 'doSetBinaryBitsetLeInt'; |
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/**#@-*/ |
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/** |
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* Constructor |
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* |
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* @param string $enumeration The classname of the enumeration |
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* @throws InvalidArgumentException |
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*/ |
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public function __construct($enumeration) |
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{ |
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if (!\is_subclass_of($enumeration, Enum::class)) { |
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throw new InvalidArgumentException(\sprintf( |
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"%s can handle subclasses of '%s' only", |
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static::class, |
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Enum::class |
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)); |
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} |
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$this->enumeration = $enumeration; |
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$this->ordinalMax = count($enumeration::getConstants()); |
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// By default the bitset is initialized as integer bitset |
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// in case the enumeraton has more enumerators then integer bits |
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// we will switch this into a binary bitset |
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if ($this->ordinalMax > \PHP_INT_SIZE * 8) { |
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// init binary bitset with zeros |
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$this->bitset = \str_repeat("\0", ceil($this->ordinalMax / 8)); |
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// switch internal binary bitset functions |
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$this->fnDoRewind = 'doRewindBin'; |
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$this->fnDoCount = 'doCountBin'; |
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$this->fnDoGetOrdinals = 'doGetOrdinalsBin'; |
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$this->fnDoGetBit = 'doGetBitBin'; |
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$this->fnDoSetBit = 'doSetBitBin'; |
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$this->fnDoUnsetBit = 'doUnsetBitBin'; |
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$this->fnDoGetBinaryBitsetLe = 'doGetBinaryBitsetLeBin'; |
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$this->fnDoSetBinaryBitsetLe = 'doSetBinaryBitsetLeBin'; |
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} |
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} |
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/** |
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* Get the classname of the enumeration |
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* @return string |
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*/ |
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public function getEnumeration() |
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{ |
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return $this->enumeration; |
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} |
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/** |
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* Attach a new enumerator or overwrite an existing one |
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* @param Enum|null|boolean|int|float|string $enumerator |
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* @return void |
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* @throws InvalidArgumentException On an invalid given enumerator |
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*/ |
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public function attach($enumerator) |
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{ |
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$enumeration = $this->enumeration; |
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$this->{$this->fnDoSetBit}($enumeration::get($enumerator)->getOrdinal()); |
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} |
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/** |
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* Detach the given enumerator |
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* @param Enum|null|boolean|int|float|string $enumerator |
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* @return void |
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* @throws InvalidArgumentException On an invalid given enumerator |
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*/ |
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public function detach($enumerator) |
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{ |
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$enumeration = $this->enumeration; |
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$this->{$this->fnDoUnsetBit}($enumeration::get($enumerator)->getOrdinal()); |
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} |
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/** |
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* Test if the given enumerator was attached |
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* @param Enum|null|boolean|int|float|string $enumerator |
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* @return boolean |
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*/ |
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public function contains($enumerator) |
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{ |
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$enumeration = $this->enumeration; |
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return $this->{$this->fnDoGetBit}($enumeration::get($enumerator)->getOrdinal()); |
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} |
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/* Iterator */ |
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/** |
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* Get the current enumerator |
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* @return Enum|null Returns the current enumerator or NULL on an invalid iterator position |
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*/ |
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public function current() |
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{ |
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if ($this->valid()) { |
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$enumeration = $this->enumeration; |
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return $enumeration::byOrdinal($this->ordinal); |
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} |
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return null; |
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} |
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/** |
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* Get the ordinal number of the current iterator position |
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* @return int |
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*/ |
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public function key() |
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{ |
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return $this->ordinal; |
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} |
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/** |
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* Go to the next valid iterator position. |
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* If no valid iterator position is found the iterator position will be the last possible + 1. |
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* @return void |
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*/ |
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public function next() |
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{ |
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do { |
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if (++$this->ordinal >= $this->ordinalMax) { |
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$this->ordinal = $this->ordinalMax; |
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return; |
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} |
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} while (!$this->{$this->fnDoGetBit}($this->ordinal)); |
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} |
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/** |
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* Go to the first valid iterator position. |
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* If no valid iterator position was found the iterator position will be 0. |
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* @return void |
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* @see doRewindBin |
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* @see doRewindInt |
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*/ |
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public function rewind() |
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{ |
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$this->{$this->fnDoRewind}(); |
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} |
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/** |
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* Go to the first valid iterator position. |
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* If no valid iterator position was found the iterator position will be 0. |
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* |
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* This is the binary bitset implementation. |
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* |
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* @return void |
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* @see rewind |
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* @see doRewindInt |
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*/ |
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private function doRewindBin() |
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{ |
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if (\ltrim($this->bitset, "\0") !== '') { |
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$this->ordinal = -1; |
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$this->next(); |
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} else { |
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$this->ordinal = 0; |
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} |
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} |
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/** |
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* Go to the first valid iterator position. |
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* If no valid iterator position was found the iterator position will be 0. |
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* |
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* This is the binary bitset implementation. |
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* |
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* @return void |
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* @see rewind |
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* @see doRewindBin |
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*/ |
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private function doRewindInt() |
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{ |
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if ($this->bitset) { |
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$this->ordinal = -1; |
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$this->next(); |
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} else { |
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$this->ordinal = 0; |
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} |
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} |
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/** |
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* Test if the iterator is in a valid state |
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* @return boolean |
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*/ |
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public function valid() |
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{ |
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return $this->ordinal !== $this->ordinalMax && $this->{$this->fnDoGetBit}($this->ordinal); |
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} |
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/* Countable */ |
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/** |
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* Count the number of elements |
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* |
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* @return int |
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* @see doCountBin |
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* @see doCountInt |
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*/ |
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public function count() |
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{ |
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return $this->{$this->fnDoCount}(); |
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} |
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/** |
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* Count the number of elements. |
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* |
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* This is the binary bitset implementation. |
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* |
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* @return int |
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* @see count |
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* @see doCountInt |
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*/ |
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private function doCountBin() |
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{ |
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$count = 0; |
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$bitset = $this->bitset; |
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$byteLen = \strlen($bitset); |
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for ($bytePos = 0; $bytePos < $byteLen; ++$bytePos) { |
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if ($bitset[$bytePos] === "\0") { |
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// fast skip null byte |
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continue; |
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} |
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$ord = \ord($bitset[$bytePos]); |
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for ($bitPos = 0; $bitPos < 8; ++$bitPos) { |
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if ($ord & (1 << $bitPos)) { |
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++$count; |
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} |
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} |
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} |
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return $count; |
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} |
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/** |
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* Count the number of elements. |
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* |
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* This is the integer bitset implementation. |
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* |
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* @return int |
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* @see count |
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* @see doCountBin |
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*/ |
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private function doCountInt() |
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{ |
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$count = 0; |
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$bitset = $this->bitset; |
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// PHP does not support right shift unsigned |
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24 |
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if ($bitset < 0) { |
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$count = 1; |
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$bitset = $bitset & \PHP_INT_MAX; |
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} |
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// iterate byte by byte and count set bits |
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for ($i = 0; $i < \PHP_INT_SIZE; ++$i) { |
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24 |
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$bitPos = $i * 8; |
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24 |
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$bitChk = 0xff << $bitPos; |
311
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24 |
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$byte = $bitset & $bitChk; |
312
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24 |
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if ($byte) { |
313
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21 |
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$byte = $byte >> $bitPos; |
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21 |
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if ($byte & 0b00000001) ++$count; |
315
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21 |
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if ($byte & 0b00000010) ++$count; |
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21 |
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if ($byte & 0b00000100) ++$count; |
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if ($byte & 0b00001000) ++$count; |
318
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21 |
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if ($byte & 0b00010000) ++$count; |
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21 |
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if ($byte & 0b00100000) ++$count; |
320
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21 |
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if ($byte & 0b01000000) ++$count; |
321
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21 |
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if ($byte & 0b10000000) ++$count; |
322
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7 |
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} |
323
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324
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24 |
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if ($bitset <= $bitChk) { |
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21 |
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break; |
326
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} |
327
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5 |
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} |
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329
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24 |
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return $count; |
330
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} |
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332
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/** |
333
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* Check if this EnumSet is the same as other |
334
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* @param EnumSet $other |
335
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* @return bool |
336
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*/ |
337
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9 |
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public function isEqual(EnumSet $other) |
338
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{ |
339
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9 |
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return $this->enumeration === $other->enumeration |
340
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9 |
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&& $this->bitset === $other->bitset; |
341
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} |
342
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343
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/** |
344
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* Check if this EnumSet is a subset of other |
345
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* @param EnumSet $other |
346
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* @return bool |
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*/ |
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|
12 |
View Code Duplication |
public function isSubset(EnumSet $other) |
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349
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{ |
350
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12 |
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if ($this->enumeration !== $other->enumeration) { |
351
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3 |
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return false; |
352
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} |
353
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354
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9 |
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return ($this->bitset & $other->bitset) === $this->bitset; |
355
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} |
356
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357
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/** |
358
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* Check if this EnumSet is a superset of other |
359
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* @param EnumSet $other |
360
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* @return bool |
361
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*/ |
362
|
12 |
View Code Duplication |
public function isSuperset(EnumSet $other) |
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363
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{ |
364
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12 |
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if ($this->enumeration !== $other->enumeration) { |
365
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3 |
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return false; |
366
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} |
367
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368
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9 |
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return ($this->bitset | $other->bitset) === $this->bitset; |
369
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} |
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371
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/** |
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* Produce a new set with enumerators from both this and other (this | other) |
373
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* |
374
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* @param EnumSet $other EnumSet of the same enumeration to produce the union |
375
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* @return EnumSet |
376
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*/ |
377
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6 |
View Code Duplication |
public function union(EnumSet $other) |
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|
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{ |
379
|
6 |
|
if ($this->enumeration !== $other->enumeration) { |
380
|
3 |
|
throw new InvalidArgumentException(\sprintf( |
381
|
3 |
|
'Other should be of the same enumeration as this %s', |
382
|
3 |
|
$this->enumeration |
383
|
1 |
|
)); |
384
|
|
|
} |
385
|
|
|
|
386
|
3 |
|
$clone = clone $this; |
387
|
3 |
|
$clone->bitset = $this->bitset | $other->bitset; |
388
|
3 |
|
return $clone; |
389
|
|
|
} |
390
|
|
|
|
391
|
|
|
/** |
392
|
|
|
* Produce a new set with enumerators common to both this and other (this & other) |
393
|
|
|
* |
394
|
|
|
* @param EnumSet $other EnumSet of the same enumeration to produce the intersect |
395
|
|
|
* @return EnumSet |
396
|
|
|
*/ |
397
|
6 |
View Code Duplication |
public function intersect(EnumSet $other) |
|
|
|
|
398
|
|
|
{ |
399
|
6 |
|
if ($this->enumeration !== $other->enumeration) { |
400
|
3 |
|
throw new InvalidArgumentException(\sprintf( |
401
|
3 |
|
'Other should be of the same enumeration as this %s', |
402
|
3 |
|
$this->enumeration |
403
|
1 |
|
)); |
404
|
|
|
} |
405
|
|
|
|
406
|
3 |
|
$clone = clone $this; |
407
|
3 |
|
$clone->bitset = $this->bitset & $other->bitset; |
408
|
3 |
|
return $clone; |
409
|
|
|
} |
410
|
|
|
|
411
|
|
|
/** |
412
|
|
|
* Produce a new set with enumerators in this but not in other (this - other) |
413
|
|
|
* |
414
|
|
|
* @param EnumSet $other EnumSet of the same enumeration to produce the diff |
415
|
|
|
* @return EnumSet |
416
|
|
|
*/ |
417
|
6 |
View Code Duplication |
public function diff(EnumSet $other) |
|
|
|
|
418
|
|
|
{ |
419
|
6 |
|
if ($this->enumeration !== $other->enumeration) { |
420
|
3 |
|
throw new InvalidArgumentException(\sprintf( |
421
|
3 |
|
'Other should be of the same enumeration as this %s', |
422
|
3 |
|
$this->enumeration |
423
|
1 |
|
)); |
424
|
|
|
} |
425
|
|
|
|
426
|
3 |
|
$clone = clone $this; |
427
|
3 |
|
$clone->bitset = $this->bitset & ~$other->bitset; |
428
|
3 |
|
return $clone; |
429
|
|
|
} |
430
|
|
|
|
431
|
|
|
/** |
432
|
|
|
* Produce a new set with enumerators in either this and other but not in both (this ^ other) |
433
|
|
|
* |
434
|
|
|
* @param EnumSet $other EnumSet of the same enumeration to produce the symmetric difference |
435
|
|
|
* @return EnumSet |
436
|
|
|
*/ |
437
|
6 |
View Code Duplication |
public function symDiff(EnumSet $other) |
|
|
|
|
438
|
|
|
{ |
439
|
6 |
|
if ($this->enumeration !== $other->enumeration) { |
440
|
3 |
|
throw new InvalidArgumentException(\sprintf( |
441
|
3 |
|
'Other should be of the same enumeration as this %s', |
442
|
3 |
|
$this->enumeration |
443
|
1 |
|
)); |
444
|
|
|
} |
445
|
|
|
|
446
|
3 |
|
$clone = clone $this; |
447
|
3 |
|
$clone->bitset = $this->bitset ^ $other->bitset; |
448
|
3 |
|
return $clone; |
449
|
|
|
} |
450
|
|
|
|
451
|
|
|
/** |
452
|
|
|
* Get ordinal numbers of the defined enumerators as array |
453
|
|
|
* @return int[] |
454
|
|
|
*/ |
455
|
42 |
|
public function getOrdinals() |
456
|
|
|
{ |
457
|
42 |
|
return $this->{$this->fnDoGetOrdinals}(); |
458
|
|
|
} |
459
|
|
|
|
460
|
|
|
/** |
461
|
|
|
* Get ordinal numbers of the defined enumerators as array. |
462
|
|
|
* |
463
|
|
|
* This is the binary bitset implementation. |
464
|
|
|
* |
465
|
|
|
* @return int[] |
466
|
|
|
* @see getOrdinals |
467
|
|
|
* @see goGetOrdinalsInt |
468
|
|
|
*/ |
469
|
6 |
|
private function doGetOrdinalsBin() |
470
|
|
|
{ |
471
|
6 |
|
$ordinals = []; |
472
|
6 |
|
$bitset = $this->bitset; |
473
|
6 |
|
$byteLen = \strlen($bitset); |
474
|
6 |
|
for ($bytePos = 0; $bytePos < $byteLen; ++$bytePos) { |
475
|
6 |
|
if ($bitset[$bytePos] === "\0") { |
476
|
|
|
// fast skip null byte |
477
|
6 |
|
continue; |
478
|
|
|
} |
479
|
|
|
|
480
|
6 |
|
$ord = \ord($bitset[$bytePos]); |
481
|
6 |
|
for ($bitPos = 0; $bitPos < 8; ++$bitPos) { |
482
|
6 |
|
if ($ord & (1 << $bitPos)) { |
483
|
6 |
|
$ordinals[] = $bytePos * 8 + $bitPos; |
484
|
2 |
|
} |
485
|
2 |
|
} |
486
|
2 |
|
} |
487
|
6 |
|
return $ordinals; |
488
|
|
|
} |
489
|
|
|
|
490
|
|
|
/** |
491
|
|
|
* Get ordinal numbers of the defined enumerators as array. |
492
|
|
|
* |
493
|
|
|
* This is the integer bitset implementation. |
494
|
|
|
* |
495
|
|
|
* @return int[] |
496
|
|
|
* @see getOrdinals |
497
|
|
|
* @see doGetOrdinalsBin |
498
|
|
|
*/ |
499
|
36 |
|
private function doGetOrdinalsInt() |
500
|
|
|
{ |
501
|
36 |
|
$ordinals = []; |
502
|
36 |
|
$ordinalMax = $this->ordinalMax; |
503
|
36 |
|
$bitset = $this->bitset; |
504
|
36 |
|
for ($ord = 0; $ord < $ordinalMax; ++$ord) { |
505
|
36 |
|
if ($bitset & (1 << $ord)) { |
506
|
36 |
|
$ordinals[] = $ord; |
507
|
12 |
|
} |
508
|
12 |
|
} |
509
|
36 |
|
return $ordinals; |
510
|
|
|
} |
511
|
|
|
|
512
|
|
|
/** |
513
|
|
|
* Get values of the defined enumerators as array |
514
|
|
|
* @return null[]|bool[]|int[]|float[]|string[] |
515
|
|
|
*/ |
516
|
18 |
|
public function getValues() |
517
|
|
|
{ |
518
|
18 |
|
$enumeration = $this->enumeration; |
519
|
18 |
|
$values = []; |
520
|
18 |
|
foreach ($this->getOrdinals() as $ord) { |
521
|
18 |
|
$values[] = $enumeration::byOrdinal($ord)->getValue(); |
522
|
6 |
|
} |
523
|
18 |
|
return $values; |
524
|
|
|
} |
525
|
|
|
|
526
|
|
|
/** |
527
|
|
|
* Get names of the defined enumerators as array |
528
|
|
|
* @return string[] |
529
|
|
|
*/ |
530
|
6 |
|
public function getNames() |
531
|
|
|
{ |
532
|
6 |
|
$enumeration = $this->enumeration; |
533
|
6 |
|
$names = []; |
534
|
6 |
|
foreach ($this->getOrdinals() as $ord) { |
535
|
6 |
|
$names[] = $enumeration::byOrdinal($ord)->getName(); |
536
|
2 |
|
} |
537
|
6 |
|
return $names; |
538
|
|
|
} |
539
|
|
|
|
540
|
|
|
/** |
541
|
|
|
* Get the defined enumerators as array |
542
|
|
|
* @return Enum[] |
543
|
|
|
*/ |
544
|
6 |
|
public function getEnumerators() |
545
|
|
|
{ |
546
|
6 |
|
$enumeration = $this->enumeration; |
547
|
6 |
|
$enumerators = []; |
548
|
6 |
|
foreach ($this->getOrdinals() as $ord) { |
549
|
6 |
|
$enumerators[] = $enumeration::byOrdinal($ord); |
550
|
2 |
|
} |
551
|
6 |
|
return $enumerators; |
552
|
|
|
} |
553
|
|
|
|
554
|
|
|
/** |
555
|
|
|
* Get binary bitset in little-endian order |
556
|
|
|
* |
557
|
|
|
* @return string |
558
|
|
|
*/ |
559
|
18 |
|
public function getBinaryBitsetLe() |
560
|
|
|
{ |
561
|
18 |
|
return $this->{$this->fnDoGetBinaryBitsetLe}(); |
562
|
|
|
} |
563
|
|
|
|
564
|
|
|
/** |
565
|
|
|
* Get binary bitset in little-endian order. |
566
|
|
|
* |
567
|
|
|
* This is the binary bitset implementation. |
568
|
|
|
* |
569
|
|
|
* @return string |
570
|
|
|
*/ |
571
|
12 |
|
private function doGetBinaryBitsetLeBin() |
572
|
|
|
{ |
573
|
12 |
|
return $this->bitset; |
574
|
|
|
} |
575
|
|
|
|
576
|
|
|
/** |
577
|
|
|
* Get binary bitset in little-endian order. |
578
|
|
|
* |
579
|
|
|
* This is the integer bitset implementation. |
580
|
|
|
* |
581
|
|
|
* @return string |
582
|
|
|
*/ |
583
|
6 |
|
private function doGetBinaryBitsetLeInt() |
584
|
|
|
{ |
585
|
6 |
|
$bin = \pack(\PHP_INT_SIZE === 8 ? 'P' : 'V', $this->bitset); |
586
|
6 |
|
return \substr($bin, 0, \ceil($this->ordinalMax / 8)); |
|
|
|
|
587
|
|
|
} |
588
|
|
|
|
589
|
|
|
/** |
590
|
|
|
* Set binary bitset in little-endian order |
591
|
|
|
* |
592
|
|
|
* NOTE: It resets the current position of the iterator |
593
|
|
|
* |
594
|
|
|
* @param string $bitset |
595
|
|
|
* @return void |
596
|
|
|
* @throws InvalidArgumentException On a non string is given as Parameter |
597
|
|
|
*/ |
598
|
39 |
|
public function setBinaryBitsetLe($bitset) |
599
|
|
|
{ |
600
|
39 |
|
if (!\is_string($bitset)) { |
601
|
3 |
|
throw new InvalidArgumentException('Bitset must be a string'); |
602
|
|
|
} |
603
|
|
|
|
604
|
36 |
|
$this->{$this->fnDoSetBinaryBitsetLe}($bitset); |
605
|
|
|
|
606
|
|
|
// reset the iterator position |
607
|
18 |
|
$this->rewind(); |
608
|
18 |
|
} |
609
|
|
|
|
610
|
|
|
/** |
611
|
|
|
* Set binary bitset in little-endian order |
612
|
|
|
* |
613
|
|
|
* NOTE: It resets the current position of the iterator |
614
|
|
|
* |
615
|
|
|
* @param string $bitset |
616
|
|
|
* @return void |
617
|
|
|
* @throws InvalidArgumentException On a non string is given as Parameter |
618
|
|
|
*/ |
619
|
21 |
|
private function doSetBinaryBitsetLeBin($bitset) |
620
|
|
|
{ |
621
|
21 |
|
$size = \strlen($this->bitset); |
622
|
21 |
|
$sizeIn = \strlen($bitset); |
623
|
|
|
|
624
|
21 |
|
if ($sizeIn < $size) { |
625
|
|
|
// add "\0" if the given bitset is not long enough |
626
|
3 |
|
$bitset .= \str_repeat("\0", $size - $sizeIn); |
627
|
19 |
|
} elseif ($sizeIn > $size) { |
628
|
6 |
|
if (\ltrim(\substr($bitset, $size), "\0") !== '') { |
629
|
3 |
|
throw new InvalidArgumentException('Out-Of-Range bits detected'); |
630
|
|
|
} |
631
|
3 |
|
$bitset = \substr($bitset, 0, $size); |
632
|
1 |
|
} |
633
|
|
|
|
634
|
|
|
// truncate out-of-range bits of last byte |
635
|
18 |
|
$lastByteMaxOrd = $this->ordinalMax % 8; |
636
|
18 |
|
if ($lastByteMaxOrd !== 0) { |
637
|
18 |
|
$lastByte = $bitset[$size - 1]; |
638
|
18 |
|
$lastByteExpected = \chr((1 << $lastByteMaxOrd) - 1) & $lastByte; |
639
|
18 |
|
if ($lastByte !== $lastByteExpected) { |
640
|
6 |
|
throw new InvalidArgumentException('Out-Of-Range bits detected'); |
641
|
|
|
} |
642
|
|
|
|
643
|
12 |
|
$this->bitset = \substr($bitset, 0, -1) . $lastByteExpected; |
644
|
4 |
|
} |
645
|
|
|
|
646
|
12 |
|
$this->bitset = $bitset; |
647
|
12 |
|
} |
648
|
|
|
|
649
|
|
|
/** |
650
|
|
|
* Set binary bitset in little-endian order |
651
|
|
|
* |
652
|
|
|
* NOTE: It resets the current position of the iterator |
653
|
|
|
* |
654
|
|
|
* @param string $bitset |
655
|
|
|
* @return void |
656
|
|
|
* @throws InvalidArgumentException On a non string is given as Parameter |
657
|
|
|
*/ |
658
|
15 |
|
private function doSetBinaryBitsetLeInt($bitset) |
659
|
|
|
{ |
660
|
15 |
|
$len = \strlen($bitset); |
661
|
15 |
|
$int = 0; |
662
|
15 |
|
for ($i = 0; $i < $len; ++$i) { |
663
|
15 |
|
$ord = \ord($bitset[$i]); |
664
|
|
|
|
665
|
15 |
|
if ($ord && $i > \PHP_INT_SIZE - 1) { |
666
|
3 |
|
throw new InvalidArgumentException('Out-Of-Range bits detected'); |
667
|
|
|
} |
668
|
|
|
|
669
|
15 |
|
$int |= $ord << (8 * $i); |
670
|
5 |
|
} |
671
|
|
|
|
672
|
12 |
|
if ($int & (~0 << $this->ordinalMax)) { |
673
|
6 |
|
throw new InvalidArgumentException('Out-Of-Range bits detected'); |
674
|
|
|
} |
675
|
|
|
|
676
|
6 |
|
$this->bitset = $int; |
677
|
6 |
|
} |
678
|
|
|
|
679
|
|
|
/** |
680
|
|
|
* Get binary bitset in big-endian order |
681
|
|
|
* |
682
|
|
|
* @return string |
683
|
|
|
*/ |
684
|
3 |
|
public function getBinaryBitsetBe() |
685
|
|
|
{ |
686
|
3 |
|
return \strrev($this->bitset); |
687
|
|
|
} |
688
|
|
|
|
689
|
|
|
/** |
690
|
|
|
* Set binary bitset in big-endian order |
691
|
|
|
* |
692
|
|
|
* NOTE: It resets the current position of the iterator |
693
|
|
|
* |
694
|
|
|
* @param string $bitset |
695
|
|
|
* @return void |
696
|
|
|
* @throws InvalidArgumentException On a non string is given as Parameter |
697
|
|
|
*/ |
698
|
6 |
|
public function setBinaryBitsetBe($bitset) |
699
|
|
|
{ |
700
|
6 |
|
if (!\is_string($bitset)) { |
701
|
3 |
|
throw new InvalidArgumentException('Bitset must be a string'); |
702
|
|
|
} |
703
|
3 |
|
$this->setBinaryBitsetLe(\strrev($bitset)); |
704
|
3 |
|
} |
705
|
|
|
|
706
|
|
|
/** |
707
|
|
|
* Get a bit at the given ordinal number |
708
|
|
|
* |
709
|
|
|
* @param int $ordinal Ordinal number of bit to get |
710
|
|
|
* @return boolean |
711
|
|
|
*/ |
712
|
9 |
|
public function getBit($ordinal) |
713
|
|
|
{ |
714
|
9 |
|
if ($ordinal < 0 || $ordinal > $this->ordinalMax) { |
715
|
3 |
|
throw new InvalidArgumentException("Ordinal number must be between 0 and {$this->ordinalMax}"); |
716
|
|
|
} |
717
|
|
|
|
718
|
6 |
|
return $this->{$this->fnDoGetBit}($ordinal); |
719
|
|
|
} |
720
|
|
|
|
721
|
|
|
/** |
722
|
|
|
* Get a bit at the given ordinal number. |
723
|
|
|
* |
724
|
|
|
* This is the binary bitset implementation. |
725
|
|
|
* |
726
|
|
|
* @param int $ordinal Ordinal number of bit to get |
727
|
|
|
* @return boolean |
728
|
|
|
* @see getBit |
729
|
|
|
* @see doGetBitInt |
730
|
|
|
*/ |
731
|
27 |
|
private function doGetBitBin($ordinal) |
732
|
|
|
{ |
733
|
27 |
|
return (\ord($this->bitset[(int) ($ordinal / 8)]) & 1 << ($ordinal % 8)) !== 0; |
734
|
|
|
} |
735
|
|
|
|
736
|
|
|
/** |
737
|
|
|
* Get a bit at the given ordinal number. |
738
|
|
|
* |
739
|
|
|
* This is the integer bitset implementation. |
740
|
|
|
* |
741
|
|
|
* @param int $ordinal Ordinal number of bit to get |
742
|
|
|
* @return boolean |
743
|
|
|
* @see getBit |
744
|
|
|
* @see doGetBitBin |
745
|
|
|
*/ |
746
|
48 |
|
private function doGetBitInt($ordinal) |
747
|
|
|
{ |
748
|
48 |
|
return (bool)($this->bitset & (1 << $ordinal)); |
749
|
|
|
} |
750
|
|
|
|
751
|
|
|
/** |
752
|
|
|
* Set a bit at the given ordinal number |
753
|
|
|
* |
754
|
|
|
* @param int $ordinal Ordnal number of bit to set |
755
|
|
|
* @param bool $bit The bit to set |
756
|
|
|
* @return void |
757
|
|
|
* @see doSetBitBin |
758
|
|
|
* @see doSetBitInt |
759
|
|
|
* @see doUnsetBin |
760
|
|
|
* @see doUnsetInt |
761
|
|
|
*/ |
762
|
6 |
|
public function setBit($ordinal, $bit) |
763
|
|
|
{ |
764
|
6 |
|
if ($ordinal < 0 || $ordinal > $this->ordinalMax) { |
765
|
3 |
|
throw new InvalidArgumentException("Ordinal number must be between 0 and {$this->ordinalMax}"); |
766
|
|
|
} |
767
|
|
|
|
768
|
3 |
|
if ($bit) { |
769
|
3 |
|
$this->{$this->fnDoSetBit}($ordinal); |
770
|
1 |
|
} else { |
771
|
3 |
|
$this->{$this->fnDoUnsetBit}($ordinal); |
772
|
|
|
} |
773
|
3 |
|
} |
774
|
|
|
|
775
|
|
|
/** |
776
|
|
|
* Set a bit at the given ordinal number. |
777
|
|
|
* |
778
|
|
|
* This is the binary bitset implementation. |
779
|
|
|
* |
780
|
|
|
* @param int $ordinal Ordnal number of bit to set |
781
|
|
|
* @return void |
782
|
|
|
* @see setBit |
783
|
|
|
* @see doSetBitInt |
784
|
|
|
*/ |
785
|
21 |
|
private function doSetBitBin($ordinal) |
786
|
|
|
{ |
787
|
21 |
|
$byte = (int) ($ordinal / 8); |
788
|
21 |
|
$this->bitset[$byte] = $this->bitset[$byte] | \chr(1 << ($ordinal % 8)); |
789
|
21 |
|
} |
790
|
|
|
|
791
|
|
|
/** |
792
|
|
|
* Set a bit at the given ordinal number. |
793
|
|
|
* |
794
|
|
|
* This is the binary bitset implementation. |
795
|
|
|
* |
796
|
|
|
* @param int $ordinal Ordnal number of bit to set |
797
|
|
|
* @return void |
798
|
|
|
* @see setBit |
799
|
|
|
* @see doSetBitBin |
800
|
|
|
*/ |
801
|
105 |
|
private function doSetBitInt($ordinal) |
802
|
|
|
{ |
803
|
105 |
|
$this->bitset = $this->bitset | (1 << $ordinal); |
804
|
105 |
|
} |
805
|
|
|
|
806
|
|
|
/** |
807
|
|
|
* Unset a bit at the given ordinal number. |
808
|
|
|
* |
809
|
|
|
* This is the binary bitset implementation. |
810
|
|
|
* |
811
|
|
|
* @param int $ordinal Ordinal number of bit to unset |
812
|
|
|
* @return void |
813
|
|
|
* @see setBit |
814
|
|
|
* @see doUnsetBitInt |
815
|
|
|
*/ |
816
|
9 |
|
private function doUnsetBitBin($ordinal) |
817
|
|
|
{ |
818
|
9 |
|
$byte = (int) ($ordinal / 8); |
819
|
9 |
|
$this->bitset[$byte] = $this->bitset[$byte] & \chr(~(1 << ($ordinal % 8))); |
820
|
9 |
|
} |
821
|
|
|
|
822
|
|
|
/** |
823
|
|
|
* Unset a bit at the given ordinal number. |
824
|
|
|
* |
825
|
|
|
* This is the integer bitset implementation. |
826
|
|
|
* |
827
|
|
|
* @param int $ordinal Ordinal number of bit to unset |
828
|
|
|
* @return void |
829
|
|
|
* @see setBit |
830
|
|
|
* @see doUnsetBitBin |
831
|
|
|
*/ |
832
|
15 |
|
private function doUnsetBitInt($ordinal) |
833
|
|
|
{ |
834
|
15 |
|
$this->bitset = $this->bitset & ~(1 << $ordinal); |
835
|
15 |
|
} |
836
|
|
|
} |
837
|
|
|
|