source: src/Common/utility.h@ 77de429

ADT ast-experimental
Last change on this file since 77de429 was 1b65595, checked in by Thierry Delisle <tdelisle@…>, 3 years ago

Implemented move semantics for ValueGuardPtr

  • Property mode set to 100644
File size: 17.2 KB
RevLine 
[51587aa]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//
[60089f4]7// utility.h --
[51587aa]8//
9// Author : Richard C. Bilson
10// Created On : Mon May 18 07:44:20 2015
[298fe57]11// Last Modified By : Andrew Beach
12// Last Modified On : Mon Apr 25 14:26:00 2022
13// Update Count : 51
[51587aa]14//
[01aeade]15
[6b0b624]16#pragma once
[51b73452]17
[234b1cb]18#include <cassert>
[e491159]19#include <cctype>
[940bba3]20#include <algorithm>
[2e30d47]21#include <functional>
[51b73452]22#include <iostream>
23#include <iterator>
24#include <list>
[e491159]25#include <memory>
26#include <sstream>
27#include <string>
[55a68c3]28#include <type_traits>
[fbecee5]29#include <utility>
[234b1cb]30#include <vector>
[8abca06]31#include <cstring> // memcmp
[be9288a]32
[50377a4]33#include "Common/Indenter.h"
34
[5cbacf1]35class Expression;
36
[c1ed2ee]37/// bring std::move into global scope
38using std::move;
39
40/// partner to move that copies any copyable type
41template<typename T>
42T copy( const T & x ) { return x; }
43
[51b73452]44template< typename T >
[01aeade]45static inline T * maybeClone( const T *orig ) {
46 if ( orig ) {
47 return orig->clone();
48 } else {
49 return 0;
50 } // if
[51b73452]51}
52
[a7741435]53template< typename T, typename U >
[e04ef3a]54struct maybeBuild_t {
55 static T * doit( const U *orig ) {
56 if ( orig ) {
57 return orig->build();
58 } else {
59 return 0;
60 } // if
61 }
62};
63
[51b73452]64template< typename T, typename U >
[01aeade]65static inline T * maybeBuild( const U *orig ) {
[e04ef3a]66 return maybeBuild_t<T,U>::doit(orig);
[51b73452]67}
68
[7ecbb7e]69template< typename T, typename U >
70static inline T * maybeMoveBuild( const U *orig ) {
71 T* ret = maybeBuild<T>(orig);
72 delete orig;
73 return ret;
74}
75
[51b73452]76template< typename Input_iterator >
[01aeade]77void printEnums( Input_iterator begin, Input_iterator end, const char * const *name_array, std::ostream &os ) {
78 for ( Input_iterator i = begin; i != end; ++i ) {
79 os << name_array[ *i ] << ' ';
80 } // for
[51b73452]81}
82
83template< typename Container >
[8abee136]84void deleteAll( const Container &container ) {
85 for ( const auto &i : container ) {
86 delete i;
[01aeade]87 } // for
[51b73452]88}
89
90template< typename Container >
[50377a4]91void printAll( const Container &container, std::ostream &os, Indenter indent = {} ) {
[01aeade]92 for ( typename Container::const_iterator i = container.begin(); i != container.end(); ++i ) {
93 if ( *i ) {
[50377a4]94 os << indent;
95 (*i)->print( os, indent );
[60089f4]96 // need an endl after each element because it's not easy to know when each individual item should end
[01aeade]97 os << std::endl;
98 } // if
99 } // for
[51b73452]100}
101
102template< typename SrcContainer, typename DestContainer >
[01aeade]103void cloneAll( const SrcContainer &src, DestContainer &dest ) {
104 typename SrcContainer::const_iterator in = src.begin();
105 std::back_insert_iterator< DestContainer > out( dest );
106 while ( in != src.end() ) {
107 *out++ = (*in++)->clone();
108 } // while
[51b73452]109}
110
[54c9000]111template< typename SrcContainer, typename DestContainer, typename Predicate >
112void cloneAll_if( const SrcContainer &src, DestContainer &dest, Predicate pred ) {
113 std::back_insert_iterator< DestContainer > out( dest );
114 for ( auto x : src ) {
115 if ( pred(x) ) {
116 *out++ = x->clone();
117 }
118 } // while
119}
120
[51b73452]121template< typename Container >
[01aeade]122void assertAll( const Container &container ) {
123 int count = 0;
124 for ( typename Container::const_iterator i = container.begin(); i != container.end(); ++i ) {
125 if ( !(*i) ) {
126 std::cerr << count << " is null" << std::endl;
127 } // if
128 } // for
129}
130
[51b73452]131template < typename T >
[01aeade]132std::list<T> tail( std::list<T> l ) {
133 if ( ! l.empty() ) {
134 std::list<T> ret(++(l.begin()), l.end());
135 return ret;
136 } // if
[51b73452]137}
138
139template < typename T >
140std::list<T> flatten( std::list < std::list<T> > l) {
[01aeade]141 typedef std::list <T> Ts;
[51b73452]142
[01aeade]143 Ts ret;
[51b73452]144
[a08ba92]145 switch ( l.size() ) {
[01aeade]146 case 0:
147 return ret;
148 case 1:
149 return l.front();
150 default:
151 ret = flatten(tail(l));
152 ret.insert(ret.begin(), l.front().begin(), l.front().end());
153 return ret;
154 } // switch
[51b73452]155}
156
[234b1cb]157/// Splice src onto the end of dst, clearing src
158template< typename T >
159void splice( std::vector< T > & dst, std::vector< T > & src ) {
160 dst.reserve( dst.size() + src.size() );
161 for ( T & x : src ) { dst.emplace_back( std::move( x ) ); }
162 src.clear();
163}
164
165/// Splice src onto the begining of dst, clearing src
166template< typename T >
167void spliceBegin( std::vector< T > & dst, std::vector< T > & src ) {
168 splice( src, dst );
169 dst.swap( src );
170}
171
[60089f4]172template < typename T >
[2298f728]173void toString_single( std::ostream & os, const T & value ) {
[79970ed]174 os << value;
175}
176
177template < typename T, typename... Params >
[2298f728]178void toString_single( std::ostream & os, const T & value, const Params & ... params ) {
[79970ed]179 os << value;
180 toString_single( os, params ... );
181}
182
183template < typename ... Params >
[2298f728]184std::string toString( const Params & ... params ) {
[5f2f2d7]185 std::ostringstream os;
[79970ed]186 toString_single( os, params... );
[5f2f2d7]187 return os.str();
[51b73452]188}
189
[babeeda]190#define toCString( ... ) toString( __VA_ARGS__ ).c_str()
191
[3c13c03]192// replace element of list with all elements of another list
[51b73452]193template< typename T >
194void replace( std::list< T > &org, typename std::list< T >::iterator pos, std::list< T > &with ) {
[01aeade]195 typename std::list< T >::iterator next = pos; advance( next, 1 );
[51b73452]196
[01aeade]197 //if ( next != org.end() ) {
[a08ba92]198 org.erase( pos );
199 org.splice( next, with );
200 //}
[51b73452]201
[01aeade]202 return;
[51b73452]203}
204
[3c13c03]205// replace range of a list with a single element
206template< typename T >
207void replace( std::list< T > &org, typename std::list< T >::iterator begin, typename std::list< T >::iterator end, const T & with ) {
208 org.insert( begin, with );
209 org.erase( begin, end );
210}
211
[940bba3]212template< typename... Args >
213auto filter(Args&&... args) -> decltype(std::copy_if(std::forward<Args>(args)...)) {
214 return std::copy_if(std::forward<Args>(args)...);
[51b73452]215}
216
[2bf9c37]217template <typename E, typename UnaryPredicate, template< typename, typename...> class Container, typename... Args >
218void filter( Container< E *, Args... > & container, UnaryPredicate pred, bool doDelete ) {
219 auto i = begin( container );
220 while ( i != end( container ) ) {
221 auto it = next( i );
222 if ( pred( *i ) ) {
223 if ( doDelete ) {
224 delete *i;
225 } // if
226 container.erase( i );
227 } // if
228 i = it;
229 } // while
230}
231
[298fe57]232template<typename Container, typename Pred>
233void erase_if( Container & cont, Pred && pred ) {
234 auto keep_end = std::remove_if( cont.begin(), cont.end(), pred );
235 cont.erase( keep_end, cont.end() );
236}
237
[940bba3]238template< typename... Args >
239auto zip(Args&&... args) -> decltype(zipWith(std::forward<Args>(args)..., std::make_pair)) {
240 return zipWith(std::forward<Args>(args)..., std::make_pair);
[51b73452]241}
242
243template< class InputIterator1, class InputIterator2, class OutputIterator, class BinFunction >
244void zipWith( InputIterator1 b1, InputIterator1 e1, InputIterator2 b2, InputIterator2 e2, OutputIterator out, BinFunction func ) {
[01aeade]245 while ( b1 != e1 && b2 != e2 )
246 *out++ = func(*b1++, *b2++);
[51b73452]247}
248
[d939274]249// it's nice to actually be able to increment iterators by an arbitrary amount
[940bba3]250template< class InputIt, class Distance >
251InputIt operator+( InputIt it, Distance n ) {
252 advance(it, n);
253 return it;
[d939274]254}
255
[79970ed]256template< typename T >
257void warn_single( const T & arg ) {
258 std::cerr << arg << std::endl;
259}
260
261template< typename T, typename... Params >
262void warn_single(const T & arg, const Params & ... params ) {
263 std::cerr << arg;
264 warn_single( params... );
265}
266
267template< typename... Params >
268void warn( const Params & ... params ) {
269 std::cerr << "Warning: ";
270 warn_single( params... );
271}
272
[8abca06]273// determines if pref is a prefix of str
274static inline bool isPrefix( const std::string & str, const std::string & pref, unsigned int start = 0 ) {
[bc3127d]275 if ( pref.size() > str.size() ) return false;
[8abca06]276 return 0 == memcmp( str.c_str() + start, pref.c_str(), pref.size() );
277 // return prefix == full.substr(0, prefix.size()); // for future, requires c++17
[bc3127d]278}
279
[940bba3]280// -----------------------------------------------------------------------------
281// Ref Counted Singleton class
282// Objects that inherit from this class will have at most one reference to it
283// but if all references die, the object will be deleted.
284
[e491159]285template< typename ThisType >
286class RefCountSingleton {
287 public:
288 static std::shared_ptr<ThisType> get() {
289 if( global_instance.expired() ) {
290 std::shared_ptr<ThisType> new_instance = std::make_shared<ThisType>();
291 global_instance = new_instance;
292 return std::move(new_instance);
293 }
294 return global_instance.lock();
295 }
296 private:
297 static std::weak_ptr<ThisType> global_instance;
298};
299
[1f75e2d]300template< typename ThisType >
301std::weak_ptr<ThisType> RefCountSingleton<ThisType>::global_instance;
302
[940bba3]303// -----------------------------------------------------------------------------
[c8dfcd3]304// RAII object to regulate "save and restore" behaviour, e.g.
305// void Foo::bar() {
306// ValueGuard<int> guard(var); // var is a member of type Foo
307// var = ...;
308// } // var's original value is restored
309template< typename T >
310struct ValueGuard {
311 T old;
312 T& ref;
313
314 ValueGuard(T& inRef) : old(inRef), ref(inRef) {}
315 ~ValueGuard() { ref = old; }
316};
317
[134322e]318template< typename T >
319struct ValueGuardPtr {
320 T old;
321 T* ref;
322
323 ValueGuardPtr(T * inRef) : old( inRef ? *inRef : T() ), ref(inRef) {}
[1b65595]324 ValueGuardPtr(const ValueGuardPtr& other) = delete;
325 ValueGuardPtr(ValueGuardPtr&& other) : old(other.old), ref(other.ref) { other.ref = nullptr; }
[134322e]326 ~ValueGuardPtr() { if( ref ) *ref = old; }
327};
328
[234223f]329template< typename aT >
330struct FuncGuard {
331 aT m_after;
332
333 template< typename bT >
334 FuncGuard( bT before, aT after ) : m_after( after ) {
335 before();
336 }
337
338 ~FuncGuard() {
339 m_after();
340 }
341};
342
343template< typename bT, typename aT >
344FuncGuard<aT> makeFuncGuard( bT && before, aT && after ) {
345 return FuncGuard<aT>( std::forward<bT>(before), std::forward<aT>(after) );
346}
347
[134322e]348template< typename T >
349struct ValueGuardPtr< std::list< T > > {
350 std::list< T > old;
351 std::list< T >* ref;
352
353 ValueGuardPtr( std::list< T > * inRef) : old(), ref(inRef) {
354 if( ref ) { swap( *ref, old ); }
355 }
356 ~ValueGuardPtr() { if( ref ) { swap( *ref, old ); } }
357};
358
[940bba3]359// -----------------------------------------------------------------------------
360// Helper struct and function to support
361// for ( val : reverseIterate( container ) ) {}
362// syntax to have a for each that iterates backwards
363
[44f6341]364template< typename T >
[4a9ccc3]365struct reverse_iterate_t {
[44f6341]366 T& ref;
367
[4a9ccc3]368 reverse_iterate_t( T & ref ) : ref(ref) {}
[44f6341]369
[490fb92e]370 // this does NOT work on const T!!!
371 // typedef typename T::reverse_iterator iterator;
372 auto begin() { return ref.rbegin(); }
373 auto end() { return ref.rend(); }
[44f6341]374};
375
376template< typename T >
[4a9ccc3]377reverse_iterate_t< T > reverseIterate( T & ref ) {
378 return reverse_iterate_t< T >( ref );
[44f6341]379}
380
[f8143a6]381template< typename T >
382struct enumerate_t {
383 template<typename val_t>
384 struct value_t {
385 val_t & val;
386 size_t idx;
387 };
388
389 template< typename iter_t, typename val_t >
390 struct iterator_t {
391 iter_t it;
392 size_t idx;
393
394 iterator_t( iter_t _it, size_t _idx ) : it(_it), idx(_idx) {}
395
396 value_t<val_t> operator*() const { return value_t<val_t>{ *it, idx }; }
397
398 bool operator==(const iterator_t & o) const { return o.it == it; }
399 bool operator!=(const iterator_t & o) const { return o.it != it; }
400
401 iterator_t & operator++() {
402 it++;
403 idx++;
404 return *this;
405 }
406
407 using difference_type = typename std::iterator_traits< iter_t >::difference_type;
408 using value_type = value_t<val_t>;
409 using pointer = value_t<val_t> *;
410 using reference = value_t<val_t> &;
411 using iterator_category = std::forward_iterator_tag;
412 };
413
414 T & ref;
415
416 using iterator = iterator_t< typename T::iterator, typename T::value_type >;
417 using const_iterator = iterator_t< typename T::const_iterator, const typename T::value_type >;
418
419 iterator begin() { return iterator( ref.begin(), 0 ); }
420 iterator end() { return iterator( ref.end(), ref.size() ); }
421
422 const_iterator begin() const { return const_iterator( ref.cbegin(), 0 ); }
423 const_iterator end() const { return const_iterator( ref.cend(), ref.size() ); }
424
425 const_iterator cbegin() const { return const_iterator( ref.cbegin(), 0 ); }
426 const_iterator cend() const { return const_iterator( ref.cend(), ref.size() ); }
427};
428
429template< typename T >
430enumerate_t<T> enumerate( T & ref ) {
431 return enumerate_t< T >{ ref };
432}
433
434template< typename T >
435const enumerate_t< const T > enumerate( const T & ref ) {
436 return enumerate_t< const T >{ ref };
437}
438
[3ad7978]439template< typename OutType, typename Range, typename Functor >
440OutType map_range( const Range& range, Functor&& functor ) {
441 OutType out;
442
443 std::transform(
444 begin( range ),
445 end( range ),
446 std::back_inserter( out ),
447 std::forward< Functor >( functor )
448 );
449
450 return out;
451}
452
[4a9ccc3]453// -----------------------------------------------------------------------------
454// Helper struct and function to support
455// for ( val : group_iterate( container1, container2, ... ) ) {}
456// syntax to have a for each that iterates multiple containers of the same length
[55a68c3]457// TODO: update to use variadic arguments
[4a9ccc3]458
459template< typename T1, typename T2 >
460struct group_iterate_t {
[50377a4]461private:
462 std::tuple<T1, T2> args;
463public:
[6d267ca]464 group_iterate_t( bool skipBoundsCheck, const T1 & v1, const T2 & v2 ) : args(v1, v2) {
[3c09d47]465 assertf(skipBoundsCheck || v1.size() == v2.size(), "group iteration requires containers of the same size: <%zd, %zd>.", v1.size(), v2.size());
[4a9ccc3]466 };
467
[50377a4]468 typedef std::tuple<decltype(*std::get<0>(args).begin()), decltype(*std::get<1>(args).begin())> value_type;
469 typedef decltype(std::get<0>(args).begin()) T1Iter;
470 typedef decltype(std::get<1>(args).begin()) T2Iter;
471
[4a9ccc3]472 struct iterator {
473 typedef std::tuple<T1Iter, T2Iter> IterTuple;
474 IterTuple it;
475 iterator( T1Iter i1, T2Iter i2 ) : it( i1, i2 ) {}
476 iterator operator++() {
477 return iterator( ++std::get<0>(it), ++std::get<1>(it) );
478 }
479 bool operator!=( const iterator &other ) const { return it != other.it; }
[55a68c3]480 value_type operator*() const { return std::tie( *std::get<0>(it), *std::get<1>(it) ); }
[4a9ccc3]481 };
[50377a4]482
[4a9ccc3]483 iterator begin() { return iterator( std::get<0>(args).begin(), std::get<1>(args).begin() ); }
484 iterator end() { return iterator( std::get<0>(args).end(), std::get<1>(args).end() ); }
485};
486
[6d267ca]487/// performs bounds check to ensure that all arguments are of the same length.
[4a9ccc3]488template< typename... Args >
[55a68c3]489group_iterate_t<Args...> group_iterate( Args &&... args ) {
[6d267ca]490 return group_iterate_t<Args...>(false, std::forward<Args>( args )...);
491}
492
493/// does not perform a bounds check - requires user to ensure that iteration terminates when appropriate.
494template< typename... Args >
495group_iterate_t<Args...> unsafe_group_iterate( Args &&... args ) {
496 return group_iterate_t<Args...>(true, std::forward<Args>( args )...);
[4a9ccc3]497}
[294647b]498
[108f3cdb]499// -----------------------------------------------------------------------------
500// Helper struct and function to support
501// for ( val : lazy_map( container1, f ) ) {}
502// syntax to have a for each that iterates a container, mapping each element by applying f
503template< typename T, typename Func >
504struct lambda_iterate_t {
[4639b0d]505 const T & ref;
506 std::function<Func> f;
[108f3cdb]507
508 struct iterator {
509 typedef decltype(begin(ref)) Iter;
510 Iter it;
[4639b0d]511 std::function<Func> f;
512 iterator( Iter it, std::function<Func> f ) : it(it), f(f) {}
[108f3cdb]513 iterator & operator++() {
514 ++it; return *this;
515 }
516 bool operator!=( const iterator &other ) const { return it != other.it; }
517 auto operator*() const -> decltype(f(*it)) { return f(*it); }
518 };
519
[4639b0d]520 lambda_iterate_t( const T & ref, std::function<Func> f ) : ref(ref), f(f) {}
[108f3cdb]521
522 auto begin() const -> decltype(iterator(std::begin(ref), f)) { return iterator(std::begin(ref), f); }
523 auto end() const -> decltype(iterator(std::end(ref), f)) { return iterator(std::end(ref), f); }
524};
525
526template< typename... Args >
[4639b0d]527lambda_iterate_t<Args...> lazy_map( const Args &... args ) {
528 return lambda_iterate_t<Args...>( args...);
[108f3cdb]529}
530
[9dc31c10]531// -----------------------------------------------------------------------------
[f14d956]532// O(1) polymorphic integer ilog2, using clz, which returns the number of leading 0-bits, starting at the most
[9dc31c10]533// significant bit (single instruction on x86)
534
535template<typename T>
[d28a03e]536inline
[b6d7f44]537#if defined(__GNUC__) && __GNUC__ > 4
[d28a03e]538constexpr
539#endif
540T ilog2(const T & t) {
541 if(std::is_integral<T>::value) {
[9dc31c10]542 const constexpr int r = sizeof(t) * __CHAR_BIT__ - 1;
[d28a03e]543 if( sizeof(T) == sizeof(unsigned int) ) return r - __builtin_clz ( t );
544 if( sizeof(T) == sizeof(unsigned long) ) return r - __builtin_clzl ( t );
545 if( sizeof(T) == sizeof(unsigned long long) ) return r - __builtin_clzll( t );
546 }
547 assert(false);
[9dc31c10]548 return -1;
[01b8ccf1]549} // ilog2
[108f3cdb]550
[5cbacf1]551// -----------------------------------------------------------------------------
552/// evaluates expr as a long long int. If second is false, expr could not be evaluated
[77d2432]553std::pair<long long int, bool> eval(const Expression * expr);
[108f3cdb]554
[87701b6]555namespace ast {
556 class Expr;
557}
558
559std::pair<long long int, bool> eval(const ast::Expr * expr);
560
[fbecee5]561// -----------------------------------------------------------------------------
[87701b6]562/// Reorders the input range in-place so that the minimal-value elements according to the
563/// comparator are in front;
[fbecee5]564/// returns the iterator after the last minimal-value element.
565template<typename Iter, typename Compare>
566Iter sort_mins( Iter begin, Iter end, Compare& lt ) {
567 if ( begin == end ) return end;
[87701b6]568
[fbecee5]569 Iter min_pos = begin;
570 for ( Iter i = begin + 1; i != end; ++i ) {
571 if ( lt( *i, *min_pos ) ) {
572 // new minimum cost; swap into first position
573 min_pos = begin;
574 std::iter_swap( min_pos, i );
575 } else if ( ! lt( *min_pos, *i ) ) {
576 // duplicate minimum cost; swap into next minimum position
577 ++min_pos;
578 std::iter_swap( min_pos, i );
579 }
580 }
581 return ++min_pos;
582}
583
584template<typename Iter, typename Compare>
585inline Iter sort_mins( Iter begin, Iter end, Compare&& lt ) {
586 return sort_mins( begin, end, lt );
587}
588
589/// sort_mins defaulted to use std::less
590template<typename Iter>
591inline Iter sort_mins( Iter begin, Iter end ) {
592 return sort_mins( begin, end, std::less<typename std::iterator_traits<Iter>::value_type>{} );
593}
594
[51587aa]595// Local Variables: //
596// tab-width: 4 //
597// mode: c++ //
598// compile-command: "make install" //
599// End: //
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