b472bdb69a8f638ed4cf657555c5dce5ae79bce4
[libcds.git] / tests / test-hdr / ordered_list / hdr_lazy.h
1 //$$CDS-header$$
2
3 #include "cppunit/cppunit_proxy.h"
4 #include <cds/container/details/lazy_list_base.h>
5
6 namespace ordlist {
7     namespace cc = cds::container;
8     namespace co = cds::container::opt;
9
10     class LazyListTestHeader: public CppUnitMini::TestCase
11     {
12     public:
13         struct stat {
14             int nEnsureExistsCall;
15             int nEnsureNewCall;
16
17             stat()
18             {
19                 nEnsureExistsCall
20                     = nEnsureNewCall
21                     = 0;
22             }
23         };
24
25         struct item {
26             int     nKey;
27             int     nVal;
28
29             stat    s;
30
31             item(int key)
32                 : nKey( key )
33                 , nVal( key * 2 )
34                 , s()
35             {}
36
37             item(int key, int val)
38                 : nKey( key )
39                 , nVal(val)
40                 , s()
41             {}
42
43             item( item const& v )
44                 : nKey( v.nKey )
45                 , nVal( v.nVal )
46                 , s()
47             {}
48
49             int key() const
50             {
51                 return nKey;
52             }
53         };
54
55         template <typename T>
56         struct lt
57         {
58             bool operator ()(const T& v1, const T& v2 ) const
59             {
60                 return v1.key() < v2.key();
61             }
62
63             template <typename Q>
64             bool operator ()(const T& v1, const Q& v2 ) const
65             {
66                 return v1.key() < v2;
67             }
68
69             template <typename Q>
70             bool operator ()(const Q& v1, const T& v2 ) const
71             {
72                 return v1 < v2.key();
73             }
74         };
75
76         template <typename T>
77         struct cmp {
78             int operator ()(const T& v1, const T& v2 ) const
79             {
80                 if ( v1.key() < v2.key() )
81                     return -1;
82                 return v1.key() > v2.key() ? 1 : 0;
83             }
84
85             template <typename Q>
86             int operator ()(const T& v1, const Q& v2 ) const
87             {
88                 if ( v1.key() < v2 )
89                     return -1;
90                 return v1.key() > v2 ? 1 : 0;
91             }
92
93             template <typename Q>
94             int operator ()(const Q& v1, const T& v2 ) const
95             {
96                 if ( v1 < v2.key() )
97                     return -1;
98                 return v1 > v2.key() ? 1 : 0;
99             }
100         };
101
102         struct insert_functor {
103             void operator ()( item& i )
104             {
105                 i.nVal = i.nKey * 1033;
106             }
107         };
108         struct dummy_insert_functor {
109             void operator ()( item& /*i*/ )
110             {
111                 // This functor should not be called
112                 TestCase::current_test()->error( "CPPUNIT_ASSERT", "dummy_insert_functor should not be called", __FILE__, __LINE__ );
113             }
114         };
115
116         static void insert_function( item& i )
117         {
118             i.nVal = i.nKey * 1024;
119         }
120         static void dummy_insert_function( item& /*i*/ )
121         {
122             // This function should not be called
123             TestCase::current_test()->error( "CPPUNIT_ASSERT", "dummy_insert_function should not be called", __FILE__, __LINE__ );
124         }
125
126         struct erase_functor {
127             unsigned int nEraseCall;
128
129             erase_functor()
130                 : nEraseCall(0)
131             {}
132
133             void operator()( item const& /*i*/)
134             {
135                 ++nEraseCall;
136             }
137         };
138
139         struct check_value {
140             unsigned int m_nMultiplier;
141
142             check_value( unsigned int nMultiplier )
143                 : m_nMultiplier( nMultiplier )
144             {}
145
146             check_value( const check_value& s )
147                 : m_nMultiplier( s.m_nMultiplier )
148             {}
149
150             void operator()( item& i, int )
151             {
152                 CPPUNIT_ASSERT_CURRENT( int(i.nKey * m_nMultiplier) == i.nVal );
153             }
154         };
155
156         struct check_exact_value {
157             int m_nExpected;
158
159             check_exact_value( int nExpected )
160                 : m_nExpected( nExpected )
161             {}
162
163             check_exact_value( check_exact_value const& s)
164                 : m_nExpected( s.m_nExpected )
165             {}
166
167             void operator()( item& i, int )
168             {
169                 CPPUNIT_ASSERT_CURRENT( i.nVal == m_nExpected );
170             }
171         };
172
173         struct dummy_check_value {
174             void operator()( item& /*i*/, int )
175             {
176                 // This functor should not be called
177                 TestCase::current_test()->error( "CPPUNIT_ASSERT", "dummy_check_value should not be called", __FILE__, __LINE__ );
178             }
179         };
180
181         struct ensure_functor {
182             void operator()( bool /*bNew*/, item& i, int n )
183             {
184                 i.nVal = i.nKey * 1024;
185             }
186         };
187
188         static void ensure_func( bool /*bNew*/, item& i, int n )
189         {
190             i.nVal = n * 1033;
191         }
192
193         struct other_item
194         {
195             int nKey;
196
197             other_item()
198             {}
199
200             other_item(int n)
201                 : nKey(n)
202             {}
203         };
204
205         struct other_less
206         {
207             template <typename T1, typename T2>
208             bool operator()( T1 const& t1, T2 const& t2 ) const
209             {
210                 return t1.nKey < t2.nKey;
211             }
212         };
213
214     protected:
215         template <class OrdList>
216         void test_with( OrdList& l )
217         {
218             typedef typename OrdList::value_type    value_type;
219
220             // The list should be empty
221             CPPUNIT_ASSERT( l.empty() );
222
223             // insert test
224             CPPUNIT_ASSERT( l.insert( 50 ) );
225             CPPUNIT_ASSERT( l.insert( item( 25 )) );
226             CPPUNIT_ASSERT( l.insert( item( 100 )) );
227
228             // insert failed - such key exists
229             CPPUNIT_ASSERT( !l.insert( 50 ) );
230             CPPUNIT_ASSERT( !l.insert( item( 100 )) );
231
232             // clear test
233
234             // The list should not be empty
235             CPPUNIT_ASSERT( !l.empty() );
236             l.clear();
237             // and now the list is empty
238             CPPUNIT_ASSERT( l.empty() );
239
240             // Test insert with functor
241
242             CPPUNIT_ASSERT( l.insert( 100, insert_functor() ) );
243             // passed by ref
244             {
245                 insert_functor f;
246                 CPPUNIT_ASSERT( l.insert( item( 25 ), std::ref( f ) ) );
247                 CPPUNIT_ASSERT( !l.insert( item( 100 ), std::ref( f ) ) );
248             }
249             // Test insert with function
250             CPPUNIT_ASSERT( l.insert( 50, insert_function ));
251             CPPUNIT_ASSERT( !l.insert( 25, dummy_insert_function ));
252             CPPUNIT_ASSERT( !l.insert( 100, dummy_insert_functor() ));
253
254             // The list should not be empty
255             CPPUNIT_ASSERT( !l.empty() );
256
257             // Check inserted values
258             {
259                 int i;
260                 i = 100;
261
262                 CPPUNIT_ASSERT( l.find( 100 ));
263                 CPPUNIT_ASSERT( l.find( i, check_value(1033) ));
264                 {
265                     check_value f(1033);
266                     i = 25;
267                     CPPUNIT_ASSERT( l.find_with( 25, lt<value_type>() ));
268                     CPPUNIT_ASSERT( l.find_with( i, lt<value_type>(), std::ref( f ) ) );
269                 }
270                 i = 50;
271                 CPPUNIT_ASSERT( l.find( 50 ));
272                 CPPUNIT_ASSERT( l.find( i, check_value(1024) ));
273
274                 i = 10;
275                 CPPUNIT_ASSERT( !l.find_with( 10, lt<value_type>() ));
276                 CPPUNIT_ASSERT( !l.find_with( i, lt<value_type>(), dummy_check_value() ));
277                 i = 75;
278                 CPPUNIT_ASSERT( !l.find( 75 ));
279                 CPPUNIT_ASSERT( !l.find( i, dummy_check_value() ));
280                 i = 150;
281                 CPPUNIT_ASSERT( !l.find( 150 ));
282                 CPPUNIT_ASSERT( !l.find( i, dummy_check_value() ));
283             }
284
285             // The list should not be empty
286             CPPUNIT_ASSERT( !l.empty() );
287             l.clear();
288             // and now the list is empty
289             CPPUNIT_ASSERT( l.empty() );
290
291             // Ensure test
292             {
293                 std::pair<bool, bool>   ensureResult;
294                 ensure_functor f;
295                 ensureResult = l.ensure( 100, ensure_functor() );
296                 CPPUNIT_ASSERT( ensureResult.first );
297                 CPPUNIT_ASSERT( ensureResult.second );
298
299                 ensureResult = l.ensure( 200, std::ref( f ) );
300                 CPPUNIT_ASSERT( ensureResult.first );
301                 CPPUNIT_ASSERT( ensureResult.second );
302
303                 ensureResult = l.ensure( 50, ensure_func );
304                 CPPUNIT_ASSERT( ensureResult.first );
305                 CPPUNIT_ASSERT( ensureResult.second );
306
307                 int i;
308                 i = 100;
309                 CPPUNIT_ASSERT( l.find( i, check_value(1024) ));
310                 i = 50;
311                 CPPUNIT_ASSERT( l.find( i, check_value(1033) ));
312                 i = 200;
313                 CPPUNIT_ASSERT( l.find( i, check_value(1024) ));
314
315                 // ensure existing key
316                 ensureResult = l.ensure( 200, ensure_func );
317                 CPPUNIT_ASSERT( ensureResult.first );
318                 CPPUNIT_ASSERT( !ensureResult.second );
319                 i = 200;
320                 CPPUNIT_ASSERT( l.find( i, check_value(1033) ));
321
322                 ensureResult = l.ensure( 50, ensure_functor() );
323                 CPPUNIT_ASSERT( ensureResult.first );
324                 CPPUNIT_ASSERT( !ensureResult.second );
325                 i = 50;
326                 CPPUNIT_ASSERT( l.find( i, check_value(1024) ));
327             }
328
329             // erase test (list: 50, 100, 200)
330             CPPUNIT_ASSERT( !l.empty() );
331             CPPUNIT_ASSERT( l.insert(160));
332             CPPUNIT_ASSERT( l.insert(250));
333             CPPUNIT_ASSERT( !l.empty() );
334
335             CPPUNIT_ASSERT( !l.erase( 150 ));
336
337             CPPUNIT_ASSERT( l.erase( 100 ));
338             CPPUNIT_ASSERT( !l.erase( 100 ));
339
340             CPPUNIT_ASSERT( l.erase_with( 200, lt<value_type>() ));
341             CPPUNIT_ASSERT( !l.erase_with( 200, lt<value_type>() ));
342
343             {
344                 erase_functor ef;
345                 CPPUNIT_ASSERT( ef.nEraseCall == 0 );
346                 CPPUNIT_ASSERT( l.erase_with( 160, lt<value_type>(), std::ref(ef) ));
347                 CPPUNIT_ASSERT( ef.nEraseCall == 1 );
348                 CPPUNIT_ASSERT( !l.erase_with( 160, lt<value_type>(), std::ref(ef) ));
349                 CPPUNIT_ASSERT( ef.nEraseCall == 1 );
350
351                 CPPUNIT_ASSERT( l.erase( 250, std::ref(ef) ));
352                 CPPUNIT_ASSERT( ef.nEraseCall == 2 );
353                 CPPUNIT_ASSERT( !l.erase( 250, std::ref(ef) ));
354                 CPPUNIT_ASSERT( ef.nEraseCall == 2 );
355             }
356
357             CPPUNIT_ASSERT( l.erase( 50 ));
358             CPPUNIT_ASSERT( !l.erase( 50 ));
359
360             CPPUNIT_ASSERT( l.empty() );
361
362             // clear empty list
363             l.clear();
364             CPPUNIT_ASSERT( l.empty() );
365
366             {
367                 int i;
368                 // insert test
369                 CPPUNIT_ASSERT( l.emplace( 501 ) );
370                 CPPUNIT_ASSERT( l.emplace( 251, 152 ));
371                 CPPUNIT_ASSERT( l.emplace( item( 1001 )) );
372
373                 // insert failed - such key exists
374                 CPPUNIT_ASSERT( !l.emplace( 501, 2 ) );
375                 CPPUNIT_ASSERT( !l.emplace( 251, 10) );
376
377                 i = 501;
378                 CPPUNIT_ASSERT( l.find( i, check_exact_value(501*2) ));
379                 i = 251;
380                 CPPUNIT_ASSERT( l.find( i, check_exact_value(152) ));
381                 i = 1001;
382                 CPPUNIT_ASSERT( l.find( i, check_exact_value(1001*2) ));
383
384                 l.clear();
385                 CPPUNIT_ASSERT( l.empty() );
386             }
387
388             // Iterator test
389             {
390                 int nCount = 100;
391                 for ( int i = 0; i < nCount; ++i )
392                     CPPUNIT_ASSERT( l.insert( i ) );
393
394                 {
395                     typename OrdList::iterator it( l.begin() );
396                     typename OrdList::const_iterator cit( l.cbegin() );
397                     CPPUNIT_CHECK( it == cit );
398                     CPPUNIT_CHECK( it != l.end() );
399                     CPPUNIT_CHECK( it != l.cend() );
400                     CPPUNIT_CHECK( cit != l.end() );
401                     CPPUNIT_CHECK( cit != l.cend() );
402                     ++it;
403                     CPPUNIT_CHECK( it != cit );
404                     CPPUNIT_CHECK( it != l.end() );
405                     CPPUNIT_CHECK( it != l.cend() );
406                     CPPUNIT_CHECK( cit != l.end() );
407                     CPPUNIT_CHECK( cit != l.cend() );
408                     ++cit;
409                     CPPUNIT_CHECK( it == cit );
410                     CPPUNIT_CHECK( it != l.end() );
411                     CPPUNIT_CHECK( it != l.cend() );
412                     CPPUNIT_CHECK( cit != l.end() );
413                     CPPUNIT_CHECK( cit != l.cend() );
414                 }
415
416                 int i = 0;
417                 for ( typename OrdList::iterator it = l.begin(), itEnd = l.end(); it != itEnd; ++it, ++i ) {
418                     it->nVal = i * 2;
419                     CPPUNIT_ASSERT( it->nKey == i );
420                 }
421
422                 // Check that we have visited all items
423                 for ( int i = 0; i < nCount; ++i )
424                     CPPUNIT_ASSERT( l.find( i, check_value(2) ));
425
426                 l.clear();
427                 CPPUNIT_ASSERT( l.empty() );
428
429                 // Const iterator
430                 for ( int i = 0; i < nCount; ++i )
431                     CPPUNIT_ASSERT( l.insert(i) );
432
433                 i = 0;
434                 const OrdList& rl = l;
435                 for ( typename OrdList::const_iterator it = rl.begin(), itEnd = rl.end(); it != itEnd; ++it, ++i ) {
436                     // it->nVal = i * 2    ;    // not!
437                     CPPUNIT_ASSERT( it->nKey == i );
438                 }
439
440                 // Check that we have visited all items
441                 for ( int i = 0; i < nCount; ++i )
442                     CPPUNIT_ASSERT( l.find_with( i, lt<value_type>(), check_value(2) ));
443
444                 l.clear();
445                 CPPUNIT_ASSERT( l.empty() );
446             }
447         }
448
449         template <class OrdList>
450         void test()
451         {
452             typedef typename OrdList::guarded_ptr guarded_ptr;
453             typedef typename OrdList::value_type value_type;
454
455             OrdList l;
456             test_with( l );
457
458             static int const nLimit = 20;
459             int arr[nLimit];
460             for ( int i = 0; i < nLimit; i++ )
461                 arr[i] = i;
462             std::random_shuffle( arr, arr + nLimit );
463
464             // extract/get
465             for ( int i = 0; i < nLimit; ++i )
466                 l.insert( arr[i] );
467             {
468                 guarded_ptr gp;
469                 for ( int i = 0; i < nLimit; ++i ) {
470                     int nKey = arr[i];
471
472                     gp = l.get( nKey );
473                     CPPUNIT_ASSERT( gp );
474                     CPPUNIT_ASSERT( !gp.empty());
475                     CPPUNIT_CHECK( gp->nKey == nKey );
476                     CPPUNIT_CHECK( gp->nVal == nKey * 2 );
477
478                     gp = l.extract( nKey );
479                     CPPUNIT_ASSERT( gp );
480                     CPPUNIT_ASSERT( !gp.empty());
481                     CPPUNIT_CHECK( gp->nKey == nKey );
482                     CPPUNIT_CHECK( gp->nVal == nKey*2 );
483
484                     gp = l.get( nKey );
485                     CPPUNIT_CHECK( !gp );
486                     CPPUNIT_CHECK( gp.empty());
487                     CPPUNIT_CHECK( !l.extract( nKey));
488                     CPPUNIT_CHECK( gp.empty());
489                 }
490                 CPPUNIT_ASSERT( l.empty());
491                 CPPUNIT_CHECK( !l.get(arr[0]));
492                 CPPUNIT_CHECK( gp.empty());
493                 CPPUNIT_CHECK( !l.extract( arr[0]));
494                 CPPUNIT_CHECK( gp.empty());
495             }
496
497             // extract_with/get_with
498             for ( int i = 0; i < nLimit; ++i )
499                 l.insert( arr[i] );
500             {
501                 guarded_ptr gp;
502                 for ( int i = 0; i < nLimit; ++i ) {
503                     int nKey = arr[i];
504                     other_item key( nKey );
505
506                     gp = l.get_with( key, other_less() );
507                     CPPUNIT_ASSERT( gp );
508                     CPPUNIT_ASSERT( !gp.empty());
509                     CPPUNIT_CHECK( gp->nKey == nKey );
510                     CPPUNIT_CHECK( gp->nVal == nKey * 2 );
511
512                     gp = l.extract_with( key, other_less() );
513                     CPPUNIT_ASSERT( gp );
514                     CPPUNIT_ASSERT( !gp.empty());
515                     CPPUNIT_CHECK( gp->nKey == nKey );
516                     CPPUNIT_CHECK( gp->nVal == nKey*2 );
517
518                     gp = l.get_with( key, other_less() );
519                     CPPUNIT_CHECK( !gp );
520                     CPPUNIT_CHECK( gp.empty());
521                     CPPUNIT_CHECK( !l.extract_with( key, other_less()));
522                     CPPUNIT_CHECK( gp.empty());
523                 }
524                 CPPUNIT_ASSERT( l.empty());
525                 CPPUNIT_CHECK( !l.get_with(other_item(arr[0]), other_less()));
526                 CPPUNIT_CHECK( gp.empty());
527                 CPPUNIT_CHECK( !l.extract_with( other_item(arr[0]), other_less()));
528                 CPPUNIT_CHECK( gp.empty());
529             }
530
531         }
532
533         template <class OrdList>
534         void test_rcu()
535         {
536             OrdList l;
537             test_with( l );
538
539             static int const nLimit = 20;
540
541             typedef typename OrdList::rcu_lock rcu_lock;
542             typedef typename OrdList::value_type value_type;
543             typedef typename OrdList::gc rcu_type;
544
545             {
546                 int a[nLimit];
547                 for (int i = 0; i < nLimit; ++i)
548                     a[i]=i;
549                 std::random_shuffle( a, a + nLimit );
550
551                 // extract/get
552                 for ( int i = 0; i < nLimit; ++i )
553                     CPPUNIT_ASSERT( l.insert( a[i] ) );
554
555                 typename OrdList::exempt_ptr ep;
556
557                 for ( int i = 0; i < nLimit; ++i ) {
558                     {
559                         rcu_lock lock;
560                         value_type * pGet = l.get( a[i] );
561                         CPPUNIT_ASSERT( pGet != nullptr );
562                         CPPUNIT_CHECK( pGet->nKey == a[i] );
563                         CPPUNIT_CHECK( pGet->nVal == a[i] * 2 );
564
565                         ep = l.extract( a[i] );
566                         CPPUNIT_ASSERT( ep );
567                         CPPUNIT_ASSERT( !ep.empty() );
568                         CPPUNIT_CHECK( ep->nKey == a[i] );
569                         CPPUNIT_CHECK( (*ep).nVal == a[i] * 2 );
570                     }
571                     ep.release();
572                     {
573                         rcu_lock lock;
574                         CPPUNIT_CHECK( l.get( a[i] ) == nullptr );
575                         CPPUNIT_CHECK( !l.extract( a[i] ));
576                     }
577                 }
578                 CPPUNIT_ASSERT( l.empty() );
579
580                 {
581                     rcu_lock lock;
582                     CPPUNIT_CHECK( l.get( a[0] ) == nullptr );
583                     ep = l.extract( a[0] );
584                     CPPUNIT_CHECK( !ep );
585                     CPPUNIT_CHECK( ep.empty() );
586                 }
587
588                 // extract_with/get_with
589                 for ( int i = 0; i < nLimit; ++i ) {
590                     CPPUNIT_ASSERT( l.insert( a[i] ) );
591                 }
592
593                 for ( int i = 0; i < nLimit; ++i ) {
594                     other_item itm( a[i] );
595                     {
596                         rcu_lock lock;
597                         value_type * pGet = l.get_with( itm, other_less() );
598                         CPPUNIT_ASSERT( pGet != nullptr );
599                         CPPUNIT_CHECK( pGet->nKey == a[i] );
600                         CPPUNIT_CHECK( pGet->nVal == a[i] * 2 );
601
602                         ep = l.extract_with( itm, other_less() );
603                         CPPUNIT_ASSERT( ep );
604                         CPPUNIT_ASSERT( !ep.empty() );
605                         CPPUNIT_CHECK( ep->nKey == a[i] );
606                         CPPUNIT_CHECK( ep->nVal == a[i] * 2 );
607                     }
608                     ep.release();
609                     {
610                         rcu_lock lock;
611                         CPPUNIT_CHECK( l.get_with( itm, other_less() ) == nullptr );
612                         ep = l.extract_with( itm, other_less() );
613                         CPPUNIT_CHECK( !ep );
614                         CPPUNIT_CHECK( ep.empty() );
615                     }
616                 }
617                 CPPUNIT_ASSERT( l.empty() );
618
619                 {
620                     rcu_lock lock;
621                     CPPUNIT_CHECK( l.get_with( other_item( 0 ), other_less() ) == nullptr );
622                     CPPUNIT_CHECK( !l.extract_with( other_item(0), other_less() ));
623                     CPPUNIT_CHECK( ep.empty() );
624                 }
625             }
626         }
627
628         template <class OrdList>
629         void nogc_test()
630         {
631             typedef OrdList list;
632             typedef typename list::value_type    value_type;
633             typedef std::pair<typename list::iterator, bool> ensure_result;
634
635             typename list::iterator it;
636
637             list l;
638             CPPUNIT_ASSERT( l.empty() );
639             CPPUNIT_ASSERT( l.insert(50) != l.end() );
640             CPPUNIT_ASSERT( !l.empty() );
641
642             ensure_result eres = l.ensure( item(100, 33) );
643             CPPUNIT_ASSERT( eres.second );
644             CPPUNIT_ASSERT( eres.first != l.end() );
645             CPPUNIT_ASSERT( l.insert( item(150) ) != l.end() );
646
647             CPPUNIT_ASSERT( l.insert(100) == l.end() );
648             eres = l.ensure( item(50, 33) );
649             CPPUNIT_ASSERT( !eres.second );
650             CPPUNIT_ASSERT( eres.first->nVal == eres.first->nKey * 2 );
651             eres.first->nVal = 63;
652
653             it = l.find( 33 );
654             CPPUNIT_ASSERT( it == l.end() );
655
656             it = l.find( 50 );
657             CPPUNIT_ASSERT( it != l.end() );
658             CPPUNIT_ASSERT( it->nKey == 50 );
659             CPPUNIT_ASSERT( it->nVal == 63 );
660
661             it = l.find( 100 );
662             CPPUNIT_ASSERT( it != l.end() );
663             CPPUNIT_ASSERT( it->nKey == 100 );
664             CPPUNIT_ASSERT( it->nVal == 33 );
665
666             it = l.find_with( 150, lt<value_type>() );
667             CPPUNIT_ASSERT( it != l.end() );
668             CPPUNIT_ASSERT( it->nKey == 150 );
669             CPPUNIT_ASSERT( it->nVal == it->nKey * 2 );
670
671             CPPUNIT_ASSERT( !l.empty() );
672             l.clear();
673             CPPUNIT_ASSERT( l.empty() );
674
675             // insert test
676             CPPUNIT_ASSERT( l.emplace( 501 ) != l.end());
677             CPPUNIT_ASSERT( l.emplace( 251, 152 ) != l.end());
678             CPPUNIT_ASSERT( l.emplace( item( 1001 )) != l.end());
679
680             // insert failed - such key exists
681             CPPUNIT_ASSERT( l.emplace( 501, 2 ) == l.end());
682             CPPUNIT_ASSERT( l.emplace( 251, 10) == l.end());
683
684             it = l.find( 501 );
685             CPPUNIT_ASSERT( it != l.end() );
686             CPPUNIT_ASSERT( it->nKey == 501 );
687             CPPUNIT_ASSERT( it->nVal == 501 * 2 );
688
689             it = l.find_with( 251, lt<value_type>() );
690             CPPUNIT_ASSERT( it != l.end() );
691             CPPUNIT_ASSERT( it->nKey == 251 );
692             CPPUNIT_ASSERT( it->nVal == 152 );
693
694             it = l.find( 1001 );
695             CPPUNIT_ASSERT( it != l.end() );
696             CPPUNIT_ASSERT( it->nKey == 1001 );
697             CPPUNIT_ASSERT( it->nVal == 1001 * 2 );
698
699             {
700                 typename OrdList::iterator it( l.begin() );
701                 typename OrdList::const_iterator cit( l.cbegin() );
702                 CPPUNIT_CHECK( it == cit );
703                 CPPUNIT_CHECK( it != l.end() );
704                 CPPUNIT_CHECK( it != l.cend() );
705                 CPPUNIT_CHECK( cit != l.end() );
706                 CPPUNIT_CHECK( cit != l.cend() );
707                 ++it;
708                 CPPUNIT_CHECK( it != cit );
709                 CPPUNIT_CHECK( it != l.end() );
710                 CPPUNIT_CHECK( it != l.cend() );
711                 CPPUNIT_CHECK( cit != l.end() );
712                 CPPUNIT_CHECK( cit != l.cend() );
713                 ++cit;
714                 CPPUNIT_CHECK( it == cit );
715                 CPPUNIT_CHECK( it != l.end() );
716                 CPPUNIT_CHECK( it != l.cend() );
717                 CPPUNIT_CHECK( cit != l.end() );
718                 CPPUNIT_CHECK( cit != l.cend() );
719             }
720
721
722             l.clear();
723             CPPUNIT_ASSERT( l.empty() );
724         }
725
726         void HP_cmp();
727         void HP_less();
728         void HP_cmpmix();
729         void HP_ic();
730
731         void DHP_cmp();
732         void DHP_less();
733         void DHP_cmpmix();
734         void DHP_ic();
735
736         void RCU_GPI_cmp();
737         void RCU_GPI_less();
738         void RCU_GPI_cmpmix();
739         void RCU_GPI_ic();
740
741         void RCU_GPB_cmp();
742         void RCU_GPB_less();
743         void RCU_GPB_cmpmix();
744         void RCU_GPB_ic();
745
746         void RCU_GPT_cmp();
747         void RCU_GPT_less();
748         void RCU_GPT_cmpmix();
749         void RCU_GPT_ic();
750
751         void RCU_SHB_cmp();
752         void RCU_SHB_less();
753         void RCU_SHB_cmpmix();
754         void RCU_SHB_ic();
755
756         void RCU_SHT_cmp();
757         void RCU_SHT_less();
758         void RCU_SHT_cmpmix();
759         void RCU_SHT_ic();
760
761         void NOGC_cmp();
762         void NOGC_less();
763         void NOGC_cmpmix();
764         void NOGC_ic();
765
766         CPPUNIT_TEST_SUITE(LazyListTestHeader)
767             CPPUNIT_TEST(HP_cmp)
768             CPPUNIT_TEST(HP_less)
769             CPPUNIT_TEST(HP_cmpmix)
770             CPPUNIT_TEST(HP_ic)
771
772             CPPUNIT_TEST(DHP_cmp)
773             CPPUNIT_TEST(DHP_less)
774             CPPUNIT_TEST(DHP_cmpmix)
775             CPPUNIT_TEST(DHP_ic)
776
777             CPPUNIT_TEST(RCU_GPI_cmp)
778             CPPUNIT_TEST(RCU_GPI_less)
779             CPPUNIT_TEST(RCU_GPI_cmpmix)
780             CPPUNIT_TEST(RCU_GPI_ic)
781
782             CPPUNIT_TEST(RCU_GPB_cmp)
783             CPPUNIT_TEST(RCU_GPB_less)
784             CPPUNIT_TEST(RCU_GPB_cmpmix)
785             CPPUNIT_TEST(RCU_GPB_ic)
786
787             CPPUNIT_TEST(RCU_GPT_cmp)
788             CPPUNIT_TEST(RCU_GPT_less)
789             CPPUNIT_TEST(RCU_GPT_cmpmix)
790             CPPUNIT_TEST(RCU_GPT_ic)
791
792             CPPUNIT_TEST(RCU_SHB_cmp)
793             CPPUNIT_TEST(RCU_SHB_less)
794             CPPUNIT_TEST(RCU_SHB_cmpmix)
795             CPPUNIT_TEST(RCU_SHB_ic)
796
797             CPPUNIT_TEST(RCU_SHT_cmp)
798             CPPUNIT_TEST(RCU_SHT_less)
799             CPPUNIT_TEST(RCU_SHT_cmpmix)
800             CPPUNIT_TEST(RCU_SHT_ic)
801
802             CPPUNIT_TEST(NOGC_cmp)
803             CPPUNIT_TEST(NOGC_less)
804             CPPUNIT_TEST(NOGC_cmpmix)
805             CPPUNIT_TEST(NOGC_ic)
806         CPPUNIT_TEST_SUITE_END()
807     };
808
809 }   // namespace ordlist