source: src/Common/utility.h@ cfaf9be

ADT aaron-thesis arm-eh ast-experimental cleanup-dtors deferred_resn demangler enum forall-pointer-decay jacob/cs343-translation jenkins-sandbox new-ast new-ast-unique-expr new-env no_list persistent-indexer pthread-emulation qualifiedEnum resolv-new with_gc
Last change on this file since cfaf9be was 54c9000, checked in by Rob Schluntz <rschlunt@…>, 8 years ago

Fix missing attribute warning

  • Property mode set to 100644
File size: 12.3 KB
Line 
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// utility.h --
8//
9// Author : Richard C. Bilson
10// Created On : Mon May 18 07:44:20 2015
11// Last Modified By : Andrew Beach
12// Last Modified On : Thr Aug 17 11:38:00 2017
13// Update Count : 34
14//
15
16#pragma once
17
18#include <cctype>
19#include <algorithm>
20#include <functional>
21#include <iostream>
22#include <iterator>
23#include <list>
24#include <memory>
25#include <sstream>
26#include <string>
27#include <type_traits>
28
29#include <cassert>
30
31#include "Common/Indenter.h"
32
33template< typename T >
34static inline T * maybeClone( const T *orig ) {
35 if ( orig ) {
36 return orig->clone();
37 } else {
38 return 0;
39 } // if
40}
41
42template< typename T, typename U >
43struct maybeBuild_t {
44 static T * doit( const U *orig ) {
45 if ( orig ) {
46 return orig->build();
47 } else {
48 return 0;
49 } // if
50 }
51};
52
53template< typename T, typename U >
54static inline T * maybeBuild( const U *orig ) {
55 return maybeBuild_t<T,U>::doit(orig);
56}
57
58template< typename T, typename U >
59static inline T * maybeMoveBuild( const U *orig ) {
60 T* ret = maybeBuild<T>(orig);
61 delete orig;
62 return ret;
63}
64
65template< typename Input_iterator >
66void printEnums( Input_iterator begin, Input_iterator end, const char * const *name_array, std::ostream &os ) {
67 for ( Input_iterator i = begin; i != end; ++i ) {
68 os << name_array[ *i ] << ' ';
69 } // for
70}
71
72template< typename Container >
73void deleteAll( Container &container ) {
74 for ( typename Container::iterator i = container.begin(); i != container.end(); ++i ) {
75 delete *i;
76 } // for
77}
78
79template< typename Container >
80void printAll( const Container &container, std::ostream &os, Indenter indent = {} ) {
81 for ( typename Container::const_iterator i = container.begin(); i != container.end(); ++i ) {
82 if ( *i ) {
83 os << indent;
84 (*i)->print( os, indent );
85 // need an endl after each element because it's not easy to know when each individual item should end
86 os << std::endl;
87 } // if
88 } // for
89}
90
91template< typename SrcContainer, typename DestContainer >
92void cloneAll( const SrcContainer &src, DestContainer &dest ) {
93 typename SrcContainer::const_iterator in = src.begin();
94 std::back_insert_iterator< DestContainer > out( dest );
95 while ( in != src.end() ) {
96 *out++ = (*in++)->clone();
97 } // while
98}
99
100template< typename SrcContainer, typename DestContainer, typename Predicate >
101void cloneAll_if( const SrcContainer &src, DestContainer &dest, Predicate pred ) {
102 std::back_insert_iterator< DestContainer > out( dest );
103 for ( auto x : src ) {
104 if ( pred(x) ) {
105 *out++ = x->clone();
106 }
107 } // while
108}
109
110template< typename Container >
111void assertAll( const Container &container ) {
112 int count = 0;
113 for ( typename Container::const_iterator i = container.begin(); i != container.end(); ++i ) {
114 if ( !(*i) ) {
115 std::cerr << count << " is null" << std::endl;
116 } // if
117 } // for
118}
119
120template < typename T >
121std::list<T> tail( std::list<T> l ) {
122 if ( ! l.empty() ) {
123 std::list<T> ret(++(l.begin()), l.end());
124 return ret;
125 } // if
126}
127
128template < typename T >
129std::list<T> flatten( std::list < std::list<T> > l) {
130 typedef std::list <T> Ts;
131
132 Ts ret;
133
134 switch ( l.size() ) {
135 case 0:
136 return ret;
137 case 1:
138 return l.front();
139 default:
140 ret = flatten(tail(l));
141 ret.insert(ret.begin(), l.front().begin(), l.front().end());
142 return ret;
143 } // switch
144}
145
146template < typename T >
147void toString_single( std::ostream & os, const T & value ) {
148 os << value;
149}
150
151template < typename T, typename... Params >
152void toString_single( std::ostream & os, const T & value, const Params & ... params ) {
153 os << value;
154 toString_single( os, params ... );
155}
156
157template < typename ... Params >
158std::string toString( const Params & ... params ) {
159 std::ostringstream os;
160 toString_single( os, params... );
161 return os.str();
162}
163
164// replace element of list with all elements of another list
165template< typename T >
166void replace( std::list< T > &org, typename std::list< T >::iterator pos, std::list< T > &with ) {
167 typename std::list< T >::iterator next = pos; advance( next, 1 );
168
169 //if ( next != org.end() ) {
170 org.erase( pos );
171 org.splice( next, with );
172 //}
173
174 return;
175}
176
177// replace range of a list with a single element
178template< typename T >
179void replace( std::list< T > &org, typename std::list< T >::iterator begin, typename std::list< T >::iterator end, const T & with ) {
180 org.insert( begin, with );
181 org.erase( begin, end );
182}
183
184template< typename... Args >
185auto filter(Args&&... args) -> decltype(std::copy_if(std::forward<Args>(args)...)) {
186 return std::copy_if(std::forward<Args>(args)...);
187}
188
189template <typename E, typename UnaryPredicate, template< typename, typename...> class Container, typename... Args >
190void filter( Container< E *, Args... > & container, UnaryPredicate pred, bool doDelete ) {
191 auto i = begin( container );
192 while ( i != end( container ) ) {
193 auto it = next( i );
194 if ( pred( *i ) ) {
195 if ( doDelete ) {
196 delete *i;
197 } // if
198 container.erase( i );
199 } // if
200 i = it;
201 } // while
202}
203
204template< typename... Args >
205auto zip(Args&&... args) -> decltype(zipWith(std::forward<Args>(args)..., std::make_pair)) {
206 return zipWith(std::forward<Args>(args)..., std::make_pair);
207}
208
209template< class InputIterator1, class InputIterator2, class OutputIterator, class BinFunction >
210void zipWith( InputIterator1 b1, InputIterator1 e1, InputIterator2 b2, InputIterator2 e2, OutputIterator out, BinFunction func ) {
211 while ( b1 != e1 && b2 != e2 )
212 *out++ = func(*b1++, *b2++);
213}
214
215// it's nice to actually be able to increment iterators by an arbitrary amount
216template< class InputIt, class Distance >
217InputIt operator+( InputIt it, Distance n ) {
218 advance(it, n);
219 return it;
220}
221
222template< typename T >
223void warn_single( const T & arg ) {
224 std::cerr << arg << std::endl;
225}
226
227template< typename T, typename... Params >
228void warn_single(const T & arg, const Params & ... params ) {
229 std::cerr << arg;
230 warn_single( params... );
231}
232
233template< typename... Params >
234void warn( const Params & ... params ) {
235 std::cerr << "Warning: ";
236 warn_single( params... );
237}
238
239/// determines if `pref` is a prefix of `str`
240static inline bool isPrefix( const std::string & str, const std::string & pref ) {
241 if ( pref.size() > str.size() ) return false;
242 auto its = std::mismatch( pref.begin(), pref.end(), str.begin() );
243 return its.first == pref.end();
244}
245
246// -----------------------------------------------------------------------------
247// Ref Counted Singleton class
248// Objects that inherit from this class will have at most one reference to it
249// but if all references die, the object will be deleted.
250
251template< typename ThisType >
252class RefCountSingleton {
253 public:
254 static std::shared_ptr<ThisType> get() {
255 if( global_instance.expired() ) {
256 std::shared_ptr<ThisType> new_instance = std::make_shared<ThisType>();
257 global_instance = new_instance;
258 return std::move(new_instance);
259 }
260 return global_instance.lock();
261 }
262 private:
263 static std::weak_ptr<ThisType> global_instance;
264};
265
266template< typename ThisType >
267std::weak_ptr<ThisType> RefCountSingleton<ThisType>::global_instance;
268
269// -----------------------------------------------------------------------------
270// RAII object to regulate "save and restore" behaviour, e.g.
271// void Foo::bar() {
272// ValueGuard<int> guard(var); // var is a member of type Foo
273// var = ...;
274// } // var's original value is restored
275template< typename T >
276struct ValueGuard {
277 T old;
278 T& ref;
279
280 ValueGuard(T& inRef) : old(inRef), ref(inRef) {}
281 ~ValueGuard() { ref = old; }
282};
283
284template< typename T >
285struct ValueGuardPtr {
286 T old;
287 T* ref;
288
289 ValueGuardPtr(T * inRef) : old( inRef ? *inRef : T() ), ref(inRef) {}
290 ~ValueGuardPtr() { if( ref ) *ref = old; }
291};
292
293template< typename aT >
294struct FuncGuard {
295 aT m_after;
296
297 template< typename bT >
298 FuncGuard( bT before, aT after ) : m_after( after ) {
299 before();
300 }
301
302 ~FuncGuard() {
303 m_after();
304 }
305};
306
307template< typename bT, typename aT >
308FuncGuard<aT> makeFuncGuard( bT && before, aT && after ) {
309 return FuncGuard<aT>( std::forward<bT>(before), std::forward<aT>(after) );
310}
311
312template< typename T >
313struct ValueGuardPtr< std::list< T > > {
314 std::list< T > old;
315 std::list< T >* ref;
316
317 ValueGuardPtr( std::list< T > * inRef) : old(), ref(inRef) {
318 if( ref ) { swap( *ref, old ); }
319 }
320 ~ValueGuardPtr() { if( ref ) { swap( *ref, old ); } }
321};
322
323// -----------------------------------------------------------------------------
324// Helper struct and function to support
325// for ( val : reverseIterate( container ) ) {}
326// syntax to have a for each that iterates backwards
327
328template< typename T >
329struct reverse_iterate_t {
330 T& ref;
331
332 reverse_iterate_t( T & ref ) : ref(ref) {}
333
334 typedef typename T::reverse_iterator iterator;
335 iterator begin() { return ref.rbegin(); }
336 iterator end() { return ref.rend(); }
337};
338
339template< typename T >
340reverse_iterate_t< T > reverseIterate( T & ref ) {
341 return reverse_iterate_t< T >( ref );
342}
343
344template< typename OutType, typename Range, typename Functor >
345OutType map_range( const Range& range, Functor&& functor ) {
346 OutType out;
347
348 std::transform(
349 begin( range ),
350 end( range ),
351 std::back_inserter( out ),
352 std::forward< Functor >( functor )
353 );
354
355 return out;
356}
357
358// -----------------------------------------------------------------------------
359// Helper struct and function to support
360// for ( val : group_iterate( container1, container2, ... ) ) {}
361// syntax to have a for each that iterates multiple containers of the same length
362// TODO: update to use variadic arguments
363
364template< typename T1, typename T2 >
365struct group_iterate_t {
366private:
367 std::tuple<T1, T2> args;
368public:
369 group_iterate_t( bool skipBoundsCheck, const T1 & v1, const T2 & v2 ) : args(v1, v2) {
370 assertf(skipBoundsCheck || v1.size() == v2.size(), "group iteration requires containers of the same size: <%zd, %zd>.", v1.size(), v2.size());
371 };
372
373 typedef std::tuple<decltype(*std::get<0>(args).begin()), decltype(*std::get<1>(args).begin())> value_type;
374 typedef decltype(std::get<0>(args).begin()) T1Iter;
375 typedef decltype(std::get<1>(args).begin()) T2Iter;
376
377 struct iterator {
378 typedef std::tuple<T1Iter, T2Iter> IterTuple;
379 IterTuple it;
380 iterator( T1Iter i1, T2Iter i2 ) : it( i1, i2 ) {}
381 iterator operator++() {
382 return iterator( ++std::get<0>(it), ++std::get<1>(it) );
383 }
384 bool operator!=( const iterator &other ) const { return it != other.it; }
385 value_type operator*() const { return std::tie( *std::get<0>(it), *std::get<1>(it) ); }
386 };
387
388 iterator begin() { return iterator( std::get<0>(args).begin(), std::get<1>(args).begin() ); }
389 iterator end() { return iterator( std::get<0>(args).end(), std::get<1>(args).end() ); }
390};
391
392/// performs bounds check to ensure that all arguments are of the same length.
393template< typename... Args >
394group_iterate_t<Args...> group_iterate( Args &&... args ) {
395 return group_iterate_t<Args...>(false, std::forward<Args>( args )...);
396}
397
398/// does not perform a bounds check - requires user to ensure that iteration terminates when appropriate.
399template< typename... Args >
400group_iterate_t<Args...> unsafe_group_iterate( Args &&... args ) {
401 return group_iterate_t<Args...>(true, std::forward<Args>( args )...);
402}
403
404// -----------------------------------------------------------------------------
405// Helper struct and function to support
406// for ( val : lazy_map( container1, f ) ) {}
407// syntax to have a for each that iterates a container, mapping each element by applying f
408template< typename T, typename Func >
409struct lambda_iterate_t {
410 const T & ref;
411 std::function<Func> f;
412
413 struct iterator {
414 typedef decltype(begin(ref)) Iter;
415 Iter it;
416 std::function<Func> f;
417 iterator( Iter it, std::function<Func> f ) : it(it), f(f) {}
418 iterator & operator++() {
419 ++it; return *this;
420 }
421 bool operator!=( const iterator &other ) const { return it != other.it; }
422 auto operator*() const -> decltype(f(*it)) { return f(*it); }
423 };
424
425 lambda_iterate_t( const T & ref, std::function<Func> f ) : ref(ref), f(f) {}
426
427 auto begin() const -> decltype(iterator(std::begin(ref), f)) { return iterator(std::begin(ref), f); }
428 auto end() const -> decltype(iterator(std::end(ref), f)) { return iterator(std::end(ref), f); }
429};
430
431template< typename... Args >
432lambda_iterate_t<Args...> lazy_map( const Args &... args ) {
433 return lambda_iterate_t<Args...>( args...);
434}
435
436
437
438// Local Variables: //
439// tab-width: 4 //
440// mode: c++ //
441// compile-command: "make install" //
442// End: //
Note: See TracBrowser for help on using the repository browser.