mirror of https://github.com/swig/swig
204 lines
5.4 KiB
OpenEdge ABL
204 lines
5.4 KiB
OpenEdge ABL
/* -----------------------------------------------------------------------------
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* std_unordered_set.i
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*
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* SWIG typemaps for std::unordered_set
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* The Java proxy class extends java.util.AbstractSet. The std::unordered_set
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* container looks and feels much like a java.util.HashSet from Java.
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* ----------------------------------------------------------------------------- */
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%include <std_common.i>
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// ------------------------------------------------------------------------
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// std::unordered_set
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// ------------------------------------------------------------------------
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%{
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#include <unordered_set>
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#include <stdexcept>
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%}
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%fragment("SWIG_UnorderedSetSize", "header", fragment="SWIG_JavaIntFromSize_t") {
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SWIGINTERN jint SWIG_UnorderedSetSize(size_t size) {
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jint sz = SWIG_JavaIntFromSize_t(size);
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if (sz == -1) {
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throw std::out_of_range("unordered_set size is too large to fit into a Java int");
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}
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return sz;
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}
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}
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%javamethodmodifiers std::unordered_set::sizeImpl "private";
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%javamethodmodifiers std::unordered_set::containsImpl "private";
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%javamethodmodifiers std::unordered_set::removeImpl "private";
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%javamethodmodifiers std::unordered_set::hasNextImpl "private";
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%javamethodmodifiers std::unordered_set::begin "private";
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%javamethodmodifiers std::unordered_set::end "private";
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%rename(Iterator) std::unordered_set::iterator;
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%nodefaultctor std::unordered_set::iterator;
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%javamethodmodifiers std::unordered_set::iterator::incrementUnchecked "private";
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%javamethodmodifiers std::unordered_set::iterator::derefUnchecked "private";
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%javamethodmodifiers std::unordered_set::iterator::isNot "private";
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namespace std {
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template <class Key>
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class unordered_set {
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%typemap(javabase) std::unordered_set<Key> "java.util.AbstractSet<$typemap(jboxtype, Key)>"
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%proxycode %{
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public $javaclassname(java.util.Collection<? extends $typemap(jboxtype, Key)> collection) {
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this();
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addAll(collection);
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}
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public int size() {
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return sizeImpl();
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}
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public boolean addAll(java.util.Collection<? extends $typemap(jboxtype, Key)> collection) {
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boolean didAddElement = false;
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for (java.lang.Object object : collection) {
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didAddElement |= add(($typemap(jboxtype, Key))object);
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}
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return didAddElement;
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}
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public java.util.Iterator<$typemap(jboxtype, Key)> iterator() {
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return new java.util.Iterator<$typemap(jboxtype, Key)>() {
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private Iterator curr;
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private Iterator end;
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private java.util.Iterator<$typemap(jboxtype, Key)> init() {
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curr = $javaclassname.this.begin();
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end = $javaclassname.this.end();
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return this;
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}
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public $typemap(jboxtype, Key) next() {
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if (!hasNext()) {
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throw new java.util.NoSuchElementException();
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}
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// Save the current position, increment it,
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// then return the value at the position before the increment.
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final $typemap(jboxtype, Key) currValue = curr.derefUnchecked();
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curr.incrementUnchecked();
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return currValue;
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}
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public boolean hasNext() {
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return curr.isNot(end);
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}
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public void remove() {
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throw new java.lang.UnsupportedOperationException();
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}
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}.init();
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}
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public boolean containsAll(java.util.Collection<?> collection) {
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for (java.lang.Object object : collection) {
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if (!contains(object)) {
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return false;
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}
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}
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return true;
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}
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public boolean contains(java.lang.Object object) {
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if (!(object instanceof $typemap(jboxtype, Key))) {
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return false;
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}
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return containsImpl(($typemap(jboxtype, Key))object);
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}
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public boolean removeAll(java.util.Collection<?> collection) {
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boolean didRemoveElement = false;
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for (java.lang.Object object : collection) {
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didRemoveElement |= remove(object);
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}
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return didRemoveElement;
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}
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public boolean remove(java.lang.Object object) {
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if (!(object instanceof $typemap(jboxtype, Key))) {
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return false;
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}
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return removeImpl(($typemap(jboxtype, Key))object);
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}
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%}
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public:
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struct iterator {
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%typemap(javaclassmodifiers) iterator "public class"
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%extend {
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void incrementUnchecked() {
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++(*$self);
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}
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Key derefUnchecked() const {
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return **$self;
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}
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bool isNot(iterator other) const {
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return (*$self != other);
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}
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}
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};
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typedef size_t size_type;
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typedef ptrdiff_t difference_type;
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typedef Key value_type;
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typedef Key key_type;
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typedef value_type* pointer;
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typedef const value_type* const_pointer;
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typedef value_type& reference;
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typedef const value_type& const_reference;
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unordered_set();
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unordered_set(const unordered_set& other);
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%rename(isEmpty) empty;
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bool empty() const;
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void clear();
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iterator begin();
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iterator end();
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%extend {
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%fragment("SWIG_UnorderedSetSize");
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// Returns whether item was inserted.
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bool add(const Key& key) {
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return self->insert(key).second;
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}
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// Returns whether set contains key.
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bool containsImpl(const Key& key) {
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return (self->count(key) > 0);
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}
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// Returns whether the item was erased.
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bool removeImpl(const Key& key) {
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return (self->erase(key) > 0);
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}
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jint sizeImpl() const throw (std::out_of_range) {
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return SWIG_UnorderedSetSize(self->size());
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}
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bool hasNextImpl(const iterator& itr) const {
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return (itr != $self->end());
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}
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}
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};
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}
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