source: src/Common/ScopedMap.h@ e874605

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1//
2// Cforall Version 1.0.0 Copyright (C) 2015 University of Waterloo
3//
4// The contents of this file are covered under the licence agreement in the
5// file "LICENCE" distributed with Cforall.
6//
7// ScopedMap.h --
8//
9// Author : Aaron B. Moss
10// Created On : Wed Dec 2 11:37:00 2015
11// Last Modified By : Peter A. Buhr
12// Last Modified On : Tue Feb 15 08:41:28 2022
13// Update Count : 5
14//
15
16#pragma once
17
18#include <cassert>
19#include <iterator>
20#include <map>
21#include <utility>
22#include <vector>
23
24/// Default (empty) ScopedMap note type
25struct EmptyNote {};
26
27/// A map where the items are placed into nested scopes;
28/// inserted items are placed into the innermost scope, lookup looks from the innermost scope outward.
29/// Scopes may be annotated with a value; the annotation defaults to empty
30template<typename Key, typename Value, typename Note = EmptyNote>
31class ScopedMap {
32 typedef std::map< Key, Value > MapType;
33 struct Scope {
34 MapType map;
35 Note note;
36
37 template<typename N>
38 Scope(N && n) : map(), note(std::forward<N>(n)) {}
39
40 Scope() = default;
41 Scope(const Scope &) = default;
42 Scope(Scope &&) = default;
43 Scope & operator= (const Scope &) = default;
44 Scope & operator= (Scope &&) = default;
45 };
46 typedef std::vector< Scope > ScopeList;
47
48 ScopeList scopes; ///< scoped list of maps
49public:
50 typedef typename MapType::key_type key_type;
51 typedef typename MapType::mapped_type mapped_type;
52 typedef typename MapType::value_type value_type;
53 typedef typename ScopeList::size_type size_type;
54 typedef typename ScopeList::difference_type difference_type;
55 typedef typename MapType::reference reference;
56 typedef typename MapType::const_reference const_reference;
57 typedef typename MapType::pointer pointer;
58 typedef typename MapType::const_pointer const_pointer;
59
60 class iterator : public std::iterator< std::bidirectional_iterator_tag, value_type > {
61 friend class ScopedMap;
62 friend class const_iterator;
63 typedef typename ScopedMap::MapType::iterator wrapped_iterator;
64 typedef typename ScopedMap::ScopeList scope_list;
65 typedef typename scope_list::size_type size_type;
66
67 /// Checks if this iterator points to a valid item
68 bool is_valid() const {
69 return it != (*scopes)[level].map.end();
70 }
71
72 /// Increments on invalid
73 iterator & next_valid() {
74 if ( ! is_valid() ) { ++(*this); }
75 return *this;
76 }
77
78 /// Decrements on invalid
79 iterator & prev_valid() {
80 if ( ! is_valid() ) { --(*this); }
81 return *this;
82 }
83
84 iterator(scope_list & _scopes, const wrapped_iterator & _it, size_type inLevel)
85 : scopes(&_scopes), it(_it), level(inLevel) {}
86 public:
87 iterator(const iterator & that) : scopes(that.scopes), it(that.it), level(that.level) {}
88 iterator & operator= (const iterator & that) {
89 scopes = that.scopes; level = that.level; it = that.it;
90 return *this;
91 }
92
93 reference operator* () { return *it; }
94 pointer operator-> () const { return it.operator->(); }
95
96 iterator & operator++ () {
97 if ( it == (*scopes)[level].map.end() ) {
98 if ( level == 0 ) return *this;
99 --level;
100 it = (*scopes)[level].map.begin();
101 } else {
102 ++it;
103 }
104 return next_valid();
105 }
106 iterator operator++ (int) { iterator tmp = *this; ++(*this); return tmp; }
107
108 iterator & operator-- () {
109 // may fail if this is the begin iterator; allowed by STL spec
110 if ( it == (*scopes)[level].map.begin() ) {
111 ++level;
112 it = (*scopes)[level].map.end();
113 }
114 --it;
115 return prev_valid();
116 }
117 iterator operator-- (int) { iterator tmp = *this; --(*this); return tmp; }
118
119 bool operator== (const iterator & that) const {
120 return scopes == that.scopes && level == that.level && it == that.it;
121 }
122 bool operator!= (const iterator & that) const { return !( *this == that ); }
123
124 size_type get_level() const { return level; }
125
126 Note & get_note() { return (*scopes)[level].note; }
127 const Note & get_note() const { return (*scopes)[level].note; }
128
129 private:
130 scope_list *scopes;
131 wrapped_iterator it;
132 size_type level;
133 };
134
135 class const_iterator : public std::iterator< std::bidirectional_iterator_tag,
136 value_type > {
137 friend class ScopedMap;
138 typedef typename ScopedMap::MapType::iterator wrapped_iterator;
139 typedef typename ScopedMap::MapType::const_iterator wrapped_const_iterator;
140 typedef typename ScopedMap::ScopeList scope_list;
141 typedef typename scope_list::size_type size_type;
142
143 /// Checks if this iterator points to a valid item
144 bool is_valid() const {
145 return it != (*scopes)[level].map.end();
146 }
147
148 /// Increments on invalid
149 const_iterator & next_valid() {
150 if ( ! is_valid() ) { ++(*this); }
151 return *this;
152 }
153
154 /// Decrements on invalid
155 const_iterator & prev_valid() {
156 if ( ! is_valid() ) { --(*this); }
157 return *this;
158 }
159
160 const_iterator(scope_list const & _scopes, const wrapped_const_iterator & _it, size_type inLevel)
161 : scopes(&_scopes), it(_it), level(inLevel) {}
162 public:
163 const_iterator(const iterator & that) : scopes(that.scopes), it(that.it), level(that.level) {}
164 const_iterator(const const_iterator & that) : scopes(that.scopes), it(that.it), level(that.level) {}
165 const_iterator & operator= (const iterator & that) {
166 scopes = that.scopes; level = that.level; it = that.it;
167 return *this;
168 }
169 const_iterator & operator= (const const_iterator & that) {
170 scopes = that.scopes; level = that.level; it = that.it;
171 return *this;
172 }
173
174 const_reference operator* () { return *it; }
175 const_pointer operator-> () { return it.operator->(); }
176
177 const_iterator & operator++ () {
178 if ( it == (*scopes)[level].map.end() ) {
179 if ( level == 0 ) return *this;
180 --level;
181 it = (*scopes)[level].map.begin();
182 } else {
183 ++it;
184 }
185 return next_valid();
186 }
187 const_iterator operator++ (int) { const_iterator tmp = *this; ++(*this); return tmp; }
188
189 const_iterator & operator-- () {
190 // may fail if this is the begin iterator; allowed by STL spec
191 if ( it == (*scopes)[level].map.begin() ) {
192 ++level;
193 it = (*scopes)[level].map.end();
194 }
195 --it;
196 return prev_valid();
197 }
198 const_iterator operator-- (int) { const_iterator tmp = *this; --(*this); return tmp; }
199
200 bool operator== (const const_iterator & that) const {
201 return scopes == that.scopes && level == that.level && it == that.it;
202 }
203 bool operator!= (const const_iterator & that) const { return !( *this == that ); }
204
205 size_type get_level() const { return level; }
206
207 const Note & get_note() const { return (*scopes)[level].note; }
208
209 private:
210 scope_list const *scopes;
211 wrapped_const_iterator it;
212 size_type level;
213 };
214
215 /// Starts a new scope
216 void beginScope() {
217 scopes.emplace_back();
218 }
219
220 // Starts a new scope with the given note
221 template<typename N>
222 void beginScope( N && n ) {
223 scopes.emplace_back( std::forward<N>(n) );
224 }
225
226 /// Ends a scope; invalidates any iterators pointing to elements of that scope
227 void endScope() {
228 scopes.pop_back();
229 assert( ! scopes.empty() );
230 }
231
232 /// Default constructor initializes with one scope
233 ScopedMap() : scopes() { beginScope(); }
234
235 /// Constructs with a given note on the outermost scope
236 template<typename N>
237 ScopedMap( N && n ) : scopes() { beginScope(std::forward<N>(n)); }
238
239 iterator begin() { return iterator(scopes, scopes.back().map.begin(), currentScope()).next_valid(); }
240 const_iterator begin() const { return const_iterator(scopes, scopes.back().map.begin(), currentScope()).next_valid(); }
241 const_iterator cbegin() const { return const_iterator(scopes, scopes.back().map.begin(), currentScope()).next_valid(); }
242 iterator end() { return iterator(scopes, scopes[0].map.end(), 0); }
243 const_iterator end() const { return const_iterator(scopes, scopes[0].map.end(), 0); }
244 const_iterator cend() const { return const_iterator(scopes, scopes[0].map.end(), 0); }
245
246 /// Gets the index of the current scope (counted from 1)
247 size_type currentScope() const { return scopes.size() - 1; }
248
249 /// Gets the note at the given scope
250 Note & getNote() { return scopes.back().note; }
251 const Note & getNote() const { return scopes.back().note; }
252 Note & getNote( size_type i ) { return scopes[i].note; }
253 const Note & getNote( size_type i ) const { return scopes[i].note; }
254
255 /// Finds the given key in the outermost scope it occurs; returns end() for none such
256 iterator find( const Key & key ) {
257 for ( size_type i = scopes.size() - 1; ; --i ) {
258 typename MapType::iterator val = scopes[i].map.find( key );
259 if ( val != scopes[i].map.end() ) return iterator( scopes, val, i );
260 if ( i == 0 ) break;
261 }
262 return end();
263 }
264 const_iterator find( const Key & key ) const {
265 return const_iterator( const_cast< ScopedMap< Key, Value, Note >* >(this)->find( key ) );
266 }
267
268 /// Finds the given key in the provided scope; returns end() for none such
269 iterator findAt( size_type scope, const Key & key ) {
270 typename MapType::iterator val = scopes[scope].map.find( key );
271 if ( val != scopes[scope].map.end() ) return iterator( scopes, val, scope );
272 return end();
273 }
274 const_iterator findAt( size_type scope, const Key & key ) const {
275 return const_iterator( const_cast< ScopedMap< Key, Value, Note >* >(this)->findAt( scope, key ) );
276 }
277
278 /// Finds the given key in the outermost scope inside the given scope where it occurs
279 iterator findNext( const_iterator & it, const Key & key ) {
280 if ( it.level == 0 ) return end();
281 for ( size_type i = it.level - 1; ; --i ) {
282 typename MapType::iterator val = scopes[i].map.find( key );
283 if ( val != scopes[i].map.end() ) return iterator( scopes, val, i );
284 if ( i == 0 ) break;
285 }
286 return end();
287 }
288 const_iterator findNext( const_iterator & it, const Key & key ) const {
289 return const_iterator( const_cast< ScopedMap< Key, Value, Note >* >(this)->findNext( it, key ) );
290 }
291
292 /// Inserts the given key-value pair into the outermost scope
293 template< typename value_type_t >
294 std::pair< iterator, bool > insert( value_type_t && value ) {
295 std::pair< typename MapType::iterator, bool > res = scopes.back().map.insert( std::forward<value_type_t>( value ) );
296 return std::make_pair( iterator(scopes, std::move( res.first ), scopes.size()-1), std::move( res.second ) );
297 }
298
299 template< typename value_type_t >
300 std::pair< iterator, bool > insert( iterator at, value_type_t && value ) {
301 MapType & scope = (*at.scopes)[ at.level ].map;
302 std::pair< typename MapType::iterator, bool > res = scope.insert( std::forward<value_type_t>( value ) );
303 return std::make_pair( iterator(scopes, std::move( res.first ), at.level), std::move( res.second ) );
304 }
305
306 template< typename value_t >
307 std::pair< iterator, bool > insert( const Key & key, value_t && value ) { return insert( std::make_pair( key, std::forward<value_t>( value ) ) ); }
308
309 template< typename value_type_t >
310 std::pair< iterator, bool > insertAt( size_type scope, value_type_t && value ) {
311 std::pair< typename MapType::iterator, bool > res = scopes.at(scope).map.insert( std::forward<value_type_t>( value ) );
312 return std::make_pair( iterator(scopes, std::move( res.first ), scope), std::move( res.second ) );
313 }
314
315 template< typename value_t >
316 std::pair< iterator, bool > insertAt( size_type scope, const Key & key, value_t && value ) {
317 return insertAt( scope, std::make_pair( key, std::forward<value_t>( value ) ) );
318 }
319
320 Value & operator[] ( const Key & key ) {
321 iterator slot = find( key );
322 if ( slot != end() ) return slot->second;
323 return insert( key, Value() ).first->second;
324 }
325
326 iterator erase( iterator pos ) {
327 MapType & scope = (*pos.scopes)[ pos.level ].map;
328 const typename iterator::wrapped_iterator & new_it = scope.erase( pos.it );
329 iterator it( *pos.scopes, new_it, pos.level );
330 return it.next_valid();
331 }
332
333 size_type count( const Key & key ) const {
334 size_type c = 0;
335 auto it = find( key );
336 auto end = cend();
337
338 while(it != end) {
339 c++;
340 it = findNext(it, key);
341 }
342
343 return c;
344 }
345};
346
347// Local Variables: //
348// tab-width: 4 //
349// mode: c++ //
350// compile-command: "make install" //
351// End: //
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