| [ab1b971] | 1 | //
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 | 2 | // Cforall Version 1.0.0 Copyright (C) 2021 University of Waterloo
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 | 3 | //
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 | 4 | // The contents of this file are covered under the licence agreement in the
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 | 5 | // file "LICENCE" distributed with Cforall.
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 | 6 | //
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 | 7 | // bits/sequence.hfa -- PUBLIC
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 | 8 | // Intrusive doubly-linked list
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 | 9 | //
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 | 10 | // Author           : Colby Alexander Parsons & Peter A. Buhr
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 | 11 | // Created On       : Thu Jan 21 19:46:50 2021
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 | 12 | // Last Modified By :
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 | 13 | // Last Modified On :
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 | 14 | // Update Count     :
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 | 15 | //
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 | 16 | 
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| [5e82d56] | 17 | #pragma once
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 | 18 | 
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| [7d4ce2a] | 19 | #include "bits/collection.hfa"
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| [e43aa14] | 20 | #include "bits/defs.hfa"
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| [5e82d56] | 21 | 
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 | 22 | struct Seqable {
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| [e43aa14] | 23 |         __cfa_anonymous_object(Colable);
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| [ab1b971] | 24 |         // pointer to previous node in the list
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 | 25 |         struct Seqable * back;
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| [5e82d56] | 26 | };
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 | 27 | 
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| [e43aa14] | 28 | #ifdef __cforall
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 | 29 | static inline {
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| [7c1144b] | 30 |         // PUBLIC
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 | 31 | 
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| [d0502a3] | 32 |         void ?{}( Seqable & sq ) {
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| [58870e6b] | 33 |                 ((Colable &)sq){};
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| [d0502a3] | 34 |                 sq.back = 0p;
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| [5e82d56] | 35 |         } // post: ! listed()
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 | 36 | 
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| [a78c3ff] | 37 |         Seqable & getBack( Seqable & sq ) with( sq ) {
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 | 38 |                 return *back;
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| [5e82d56] | 39 |         }
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 | 40 | 
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| [7c1144b] | 41 |         // PRIVATE
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 | 42 | 
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| [5e82d56] | 43 |         Seqable *& Back( Seqable * sq ) {
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 | 44 |                 return sq->back;
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 | 45 |         }
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 | 46 | } // distribution
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 | 47 | 
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| [9536761] | 48 | 
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 | 49 | // A Sequence(T) is a Collection(T) defining the ordering of a uStack and uQueue, and to insert and remove elements
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 | 50 | // anywhere in the sequence. T must be a public descendant of uSeqable.
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 | 51 | 
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 | 52 | // The implementation is a typical doubly-linked list, except the next field of the last node points at the first node
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 | 53 | // and the back field of the last node points at the first node (circular).
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 | 54 | 
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| [ab1b971] | 55 | forall( T & ) {
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| [5e82d56] | 56 |         struct Sequence {
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| [ab1b971] | 57 |                 // Plan 9 inheritance
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 | 58 |                 inline Collection;
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| [5e82d56] | 59 |         };
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 | 60 | 
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| [e43aa14] | 61 |         static inline {
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| [5e82d56] | 62 |                 void ?{}( Sequence(T) &, const Sequence(T) & ) = void; // no copy
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 | 63 |                 Sequence(T) & ?=?( const Sequence(T) & ) = void; // no assignment
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 | 64 | 
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| [ab1b971] | 65 |                 void ?{}( Sequence(T) & s ) with( s ) {
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| [58870e6b] | 66 |                         ((Collection &)s){};
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| [9536761] | 67 |                 }       // post: isEmpty()
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| [ab1b971] | 68 |         }
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 | 69 | 
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 | 70 |         static inline forall(| { T *& Back ( T * ); T *& Next ( T * ); }) {
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 | 71 |                 // wrappers to make Collection have T
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 | 72 |                 T & head( Sequence(T) & s ) with( s ) {
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 | 73 |                         return *(T *)head( (Collection &)s );
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 | 74 |                 } // post: empty() & head() == 0 | !empty() & head() in *s
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| [5e82d56] | 75 | 
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| [9536761] | 76 |                 // Return a pointer to the last sequence element, without removing it.
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| [b37515b] | 77 |                 T & tail( Sequence(T) & s ) with( s ) {
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| [58870e6b] | 78 |                         return root ? (T &)*Back( &head( s ) ) : *0p;
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| [a5a67ab8] | 79 |                 }       // post: empty() & tail() == 0 | !empty() & tail() in *s
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| [5e82d56] | 80 | 
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| [7c1144b] | 81 |                 // Return a pointer to the element after *n, or 0p if list empty.
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| [a5a67ab8] | 82 |                 T * succ( Sequence(T) & s, T * n ) with( s ) {  // pre: *n in *s
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| [7c1144b] | 83 |                         #ifdef __CFA_DEBUG__
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| [a5a67ab8] | 84 |                         if ( ! listed( n ) ) abort( "(Sequence &)%p.succ( %p ) : Node is not on a list.", &s, n );
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| [7c1144b] | 85 |                         #endif // __CFA_DEBUG__
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| [58870e6b] | 86 |                         return Next( n ) == &head( s ) ? 0p : Next( n );
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| [a5a67ab8] | 87 |                 } // post: n == tail() & succ(n) == 0 | n != tail() & *succ(n) in *s
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| [5e82d56] | 88 | 
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| [9536761] | 89 |                 // Return a pointer to the element before *n, or 0p if list empty.
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| [a5a67ab8] | 90 |                 T * pred( Sequence(T) & s, T * n ) with( s ) {  // pre: *n in *s
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| [7c1144b] | 91 |                         #ifdef __CFA_DEBUG__
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| [a5a67ab8] | 92 |                         if ( ! listed( n ) ) abort( "(Sequence &)%p.pred( %p ) : Node is not on a list.", &s, n );
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| [7c1144b] | 93 |                         #endif // __CFA_DEBUG__
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| [58870e6b] | 94 |                         return n == &head( s ) ? 0p : Back( n );
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| [9536761] | 95 |                 } // post: n == head() & head(n) == 0 | n != head() & *pred(n) in *s
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| [5e82d56] | 96 | 
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 | 97 | 
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| [9536761] | 98 |                 // Insert *n into the sequence before *bef, or at the end if bef == 0p.
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| [a3a76ea] | 99 |                 T & insertBef( Sequence(T) & s, T & n, T & bef ) with( s ) { // pre: !n->listed() & *bef in *s
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| [7c1144b] | 100 |                         #ifdef __CFA_DEBUG__
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| [b37515b] | 101 |                         if ( listed( &n ) ) abort( "(Sequence &)%p.insertBef( %p, %p ) : Node is already on another list.", &s, n, &bef );
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| [7c1144b] | 102 |                         #endif // __CFA_DEBUG__
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| [a78c3ff] | 103 |                         if ( &bef == &head( s ) ) {                                     // must change root
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| [5e82d56] | 104 |                                 if ( root ) {
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| [58870e6b] | 105 |                                         Next( &n ) = &head( s );
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 | 106 |                                         Back( &n ) = Back( &head( s ) );
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| [5e82d56] | 107 |                                         // inserted node must be consistent before it is seen
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 | 108 |                                         asm( "" : : : "memory" );                       // prevent code movement across barrier
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| [58870e6b] | 109 |                                         Back( &head( s ) ) = &n;
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 | 110 |                                         Next( Back( &n ) ) = &n;
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| [5e82d56] | 111 |                                 } else {
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| [58870e6b] | 112 |                                         Next( &n ) = &n;
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 | 113 |                                         Back( &n ) = &n;
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| [5e82d56] | 114 |                                 } // if
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 | 115 |                                 // inserted node must be consistent before it is seen
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 | 116 |                                 asm( "" : : : "memory" );                               // prevent code movement across barrier
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| [b37515b] | 117 |                                 root = &n;
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| [5e82d56] | 118 |                         } else {
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| [a78c3ff] | 119 |                                 if ( ! &bef ) &bef = &head( s );
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| [58870e6b] | 120 |                                 Next( &n ) = &bef;
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 | 121 |                                 Back( &n ) = Back( &bef );
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| [5e82d56] | 122 |                                 // inserted node must be consistent before it is seen
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 | 123 |                                 asm( "" : : : "memory" );                               // prevent code movement across barrier
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| [58870e6b] | 124 |                                 Back( &bef ) = &n;
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 | 125 |                                 Next( Back( &n ) ) = &n;
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| [5e82d56] | 126 |                         } // if
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| [a3a76ea] | 127 |                         return n;
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| [5e82d56] | 128 |                 }       // post: n->listed() & *n in *s & succ(n) == bef
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 | 129 | 
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 | 130 | 
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 | 131 |                 // Insert *n into the sequence after *aft, or at the beginning if aft == 0.
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| [a3a76ea] | 132 |                 T & insertAft( Sequence(T) & s, T & aft, T & n ) with( s ) {    // pre: !n->listed() & *aft in *s
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| [7c1144b] | 133 |                         #ifdef __CFA_DEBUG__
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| [b37515b] | 134 |                         if ( listed( &n ) ) abort( "(Sequence &)%p.insertAft( %p, %p ) : Node is already on another list.", &s, &aft, &n );
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| [7c1144b] | 135 |                         #endif // __CFA_DEBUG__
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| [b37515b] | 136 |                         if ( ! &aft ) {                                                         // must change root
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| [5e82d56] | 137 |                                 if ( root ) {
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| [58870e6b] | 138 |                                         Next( &n ) = &head( s );
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 | 139 |                                         Back( &n ) = Back( &head( s ) );
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| [5e82d56] | 140 |                                         // inserted node must be consistent before it is seen
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 | 141 |                                         asm( "" : : : "memory" );                       // prevent code movement across barrier
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| [58870e6b] | 142 |                                         Back( &head( s ) ) = &n;
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 | 143 |                                         Next( Back( &n ) ) = &n;
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| [5e82d56] | 144 |                                 } else {
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| [58870e6b] | 145 |                                         Next( &n ) = &n;
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 | 146 |                                         Back( &n ) = &n;
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| [5e82d56] | 147 |                                 } // if
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 | 148 |                                 asm( "" : : : "memory" );                               // prevent code movement across barrier
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| [b37515b] | 149 |                                 root = &n;
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| [5e82d56] | 150 |                         } else {
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| [58870e6b] | 151 |                                 Next( &n ) = Next( &aft );
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 | 152 |                                 Back( &n ) = &aft;
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| [5e82d56] | 153 |                                 // inserted node must be consistent before it is seen
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 | 154 |                                 asm( "" : : : "memory" );                               // prevent code movement across barrier
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| [58870e6b] | 155 |                                 Back( Next( &n ) ) = &n;
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 | 156 |                                 Next( &aft ) = &n;
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| [5e82d56] | 157 |                         } // if
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| [a3a76ea] | 158 |                         return n;
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| [9536761] | 159 |                 } // post: n->listed() & *n in *s & succ(n) == bef
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| [ab1b971] | 160 | 
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| [5e82d56] | 161 |                 // pre: n->listed() & *n in *s
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| [a3a76ea] | 162 |                 T & remove( Sequence(T) & s, T & n ) with( s ) { // O(1)
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| [7c1144b] | 163 |                         #ifdef __CFA_DEBUG__
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| [b37515b] | 164 |                         if ( ! listed( &n ) ) abort( "(Sequence &)%p.remove( %p ) : Node is not on a list.", &s, &n );
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| [7c1144b] | 165 |                         #endif // __CFA_DEBUG__
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| [a78c3ff] | 166 |                         if ( &n == &head( s ) ) {
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| [58870e6b] | 167 |                                 if ( Next( &head( s ) ) == &head( s ) ) root = 0p;
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 | 168 |                                 else root = Next( &head( s ) );
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| [5e82d56] | 169 |                         } // if
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| [58870e6b] | 170 |                         Back( Next( &n ) ) = Back( &n );
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 | 171 |                         Next( Back( &n ) ) = Next( &n );
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 | 172 |                         Next( &n ) = Back( &n ) = 0p;
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| [a3a76ea] | 173 |                         return n;
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| [9536761] | 174 |                 } // post: !n->listed()
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| [5e82d56] | 175 | 
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 | 176 |                 // Add an element to the head of the sequence.
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| [a3a76ea] | 177 |                 T & addHead( Sequence(T) & s, T & n ) {                 // pre: !n->listed(); post: n->listed() & head() == n
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 | 178 |                         return insertAft( s, *0p, n );
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| [5e82d56] | 179 |                 }
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| [9536761] | 180 | 
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| [5e82d56] | 181 |                 // Add an element to the tail of the sequence.
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| [a3a76ea] | 182 |                 T & addTail( Sequence(T) & s, T & n ) {                 // pre: !n->listed(); post: n->listed() & head() == n
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 | 183 |                         return insertBef( s, n, *0p );
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| [5e82d56] | 184 |                 }
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| [9536761] | 185 | 
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| [5e82d56] | 186 |                 // Add an element to the tail of the sequence.
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| [a3a76ea] | 187 |                 T & add( Sequence(T) & s, T & n ) {                             // pre: !n->listed(); post: n->listed() & head() == n
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 | 188 |                         return addTail( s, n );
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| [5e82d56] | 189 |                 }
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| [9536761] | 190 | 
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| [5e82d56] | 191 |                 // Remove and return the head element in the sequence.
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| [b37515b] | 192 |                 T & dropHead( Sequence(T) & s ) {
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| [a78c3ff] | 193 |                         T & n = head( s );
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 | 194 |                         return &n ? remove( s, n ), n : *0p;
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| [5e82d56] | 195 |                 }
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| [9536761] | 196 | 
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| [5e82d56] | 197 |                 // Remove and return the head element in the sequence.
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| [b37515b] | 198 |                 T & drop( Sequence(T) & s ) {
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| [5e82d56] | 199 |                         return dropHead( s );
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 | 200 |                 }
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| [9536761] | 201 | 
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| [5e82d56] | 202 |                 // Remove and return the tail element in the sequence.
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| [b37515b] | 203 |                 T & dropTail( Sequence(T) & s ) {
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 | 204 |                         T & n = tail( s );
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 | 205 |                         return &n ? remove( s, n ), n : *0p;
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| [5e82d56] | 206 |                 }
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 | 207 | 
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 | 208 |                 // Transfer the "from" list to the end of s sequence; the "from" list is empty after the transfer.
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 | 209 |                 void transfer( Sequence(T) & s, Sequence(T) & from ) with( s ) {
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 | 210 |                         if ( empty( from ) ) return;                            // "from" list empty ?
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 | 211 |                         if ( empty( s ) ) {                                                     // "to" list empty ?
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 | 212 |                                 root = from.root;
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 | 213 |                         } else {                                                                        // "to" list not empty
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| [58870e6b] | 214 |                                 T * toEnd = Back( &head( s ) );
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 | 215 |                                 T * fromEnd = Back( &head( from ) );
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| [e43aa14] | 216 |                                 Back( (T *)root ) = fromEnd;
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| [58870e6b] | 217 |                                 Next( fromEnd ) = &head( s );
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| [e43aa14] | 218 |                                 Back( (T *)from.root ) = toEnd;
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| [58870e6b] | 219 |                                 Next( toEnd ) = &head( from );
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| [5e82d56] | 220 |                         } // if
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 | 221 |                         from.root = 0p;                                                         // mark "from" list empty
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 | 222 |                 }
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 | 223 | 
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 | 224 |                 // Transfer the "from" list up to node "n" to the end of s list; the "from" list becomes the sequence after node "n".
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 | 225 |                 // Node "n" must be in the "from" list.
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| [a78c3ff] | 226 |                 void split( Sequence(T) & s, Sequence(T) & from, T & n ) with( s ) {
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| [7c1144b] | 227 |                         #ifdef __CFA_DEBUG__
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| [a78c3ff] | 228 |                         if ( ! listed( &n ) ) abort( "(Sequence &)%p.split( %p ) : Node is not on a list.", &s, &n );
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| [7c1144b] | 229 |                         #endif // __CFA_DEBUG__
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| [5e82d56] | 230 |                         Sequence(T) to;
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 | 231 |                         to.root = from.root;                                            // start of "to" list
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| [58870e6b] | 232 |                         from.root = Next( &n );                                         // start of "from" list
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| [5e82d56] | 233 |                         if ( to.root == from.root ) {                           // last node in list ?
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 | 234 |                                 from.root = 0p;                                                 // mark "from" list empty
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 | 235 |                         } else {
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| [58870e6b] | 236 |                                 Back( &head( from ) ) = Back( &head( to ) ); // fix "from" list
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 | 237 |                                 Next( Back( &head( to ) ) ) = &head( from );
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 | 238 |                                 Next( &n ) = &head( to );                               // fix "to" list
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 | 239 |                                 Back( &head( to ) ) = &n;
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| [5e82d56] | 240 |                         } // if
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 | 241 |                         transfer( s, to );
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 | 242 |                 }
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 | 243 |         } // distribution
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 | 244 | } // distribution
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 | 245 | 
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| [fd54fef] | 246 | forall( T & | { T *& Back ( T * ); T *& Next ( T * ); } ) {
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| [8a81b09] | 247 |         // SeqIter(T) is used to iterate over a Sequence(T) in head-to-tail order.
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 | 248 |         struct SeqIter {
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 | 249 |                 inline ColIter;
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 | 250 |                 // The Sequence must be passed to pred and succ to check for the end of the Sequence and return 0p. Without
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 | 251 |                 // passing the sequence, traversing would require its length. Thus the iterator needs a pointer to the sequence
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 | 252 |                 // to pass to succ/pred. Both stack and queue just encounter 0p since the lists are not circular.
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 | 253 |                 Sequence(T) * seq;                                                              // FIX ME: cannot be reference
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 | 254 |         };
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 | 255 | 
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 | 256 |         static inline {
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 | 257 |                 void ?{}( SeqIter(T) & si ) with( si ) {
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 | 258 |                         ((ColIter &)si){};
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 | 259 |                         seq = 0p;
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| [9536761] | 260 |                 } // post: elts = null
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| [8a81b09] | 261 | 
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| [9536761] | 262 |                 // Create a iterator active in sequence s.
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| [8a81b09] | 263 |                 void ?{}( SeqIter(T) & si, Sequence(T) & s ) with( si ) {
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 | 264 |                         ((ColIter &)si){};
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 | 265 |                         seq = &s;
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 | 266 |                         curr = &head( s );
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| [9536761] | 267 |                 } // post: elts = null
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| [8a81b09] | 268 | 
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 | 269 |                 void ?{}( SeqIter(T) & si, Sequence(T) & s, T & start ) with( si ) {
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 | 270 |                         ((ColIter &)si){};
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 | 271 |                         seq = &s;
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 | 272 |                         curr = &start;
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| [9536761] | 273 |                 } // post: elts = null
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| [8a81b09] | 274 | 
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| [9536761] | 275 |                 // Make the iterator active in sequence s.
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| [8a81b09] | 276 |                 void over( SeqIter(T) & si, Sequence(T) & s ) with( si ) {
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 | 277 |                         seq = &s;
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 | 278 |                         curr = &head( s );
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| [9536761] | 279 |                 } // post: elts = {e in s}
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| [8a81b09] | 280 | 
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| [9536761] | 281 |                 bool ?|?( SeqIter(T) & si, T && tp ) with( si ) {
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| [8a81b09] | 282 |                         if ( curr ) {
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 | 283 |                                 &tp = Curr( si );
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 | 284 |                                 T * n = succ( *seq, Curr( si ) );
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 | 285 |                                 curr = n == &head( *seq ) ? 0p : n;
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 | 286 |                         } else &tp = 0p;
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 | 287 |                         return &tp != 0p;
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 | 288 |                 }
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 | 289 |         } // distribution
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 | 290 | 
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 | 291 | 
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 | 292 |         // A SeqIterRev(T) is used to iterate over a Sequence(T) in tail-to-head order.
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 | 293 |         struct SeqIterRev {
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 | 294 |                 inline ColIter;
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 | 295 |                 // See above for explanation.
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 | 296 |                 Sequence(T) * seq;                                                              // FIX ME: cannot be reference
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 | 297 |         };
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 | 298 | 
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 | 299 |         static inline {
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| [ab1b971] | 300 |                 void ?{}( SeqIterRev(T) & si ) with( si ) {
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| [8a81b09] | 301 |                         ((ColIter &)si){};
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 | 302 |                         seq = 0p;
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| [9536761] | 303 |                 } // post: elts = null
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| [8a81b09] | 304 | 
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| [9536761] | 305 |                 // Create a iterator active in sequence s.
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| [ab1b971] | 306 |                 void ?{}( SeqIterRev(T) & si, Sequence(T) & s ) with( si ) {
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| [8a81b09] | 307 |                         ((ColIter &)si){};
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 | 308 |                         seq = &s;
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 | 309 |                         curr = &tail( s );
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| [9536761] | 310 |                 } // post: elts = null
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| [8a81b09] | 311 | 
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| [ab1b971] | 312 |                 void ?{}( SeqIterRev(T) & si, Sequence(T) & s, T & start ) with( si ) {
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| [8a81b09] | 313 |                         ((ColIter &)si){};
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 | 314 |                         seq = &s;
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 | 315 |                         curr = &start;
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| [9536761] | 316 |                 } // post: elts = null
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| [8a81b09] | 317 | 
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| [9536761] | 318 |                 // Make the iterator active in sequence s.
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| [8a81b09] | 319 |                 void over( SeqIterRev(T) & si, Sequence(T) & s ) with( si ) {
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 | 320 |                         seq = &s;
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 | 321 |                         curr = &tail( s );
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| [9536761] | 322 |                 } // post: elts = {e in s}
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| [8a81b09] | 323 | 
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| [9536761] | 324 |                 bool ?|?( SeqIterRev(T) & si, T && tp ) with( si ) {
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| [8a81b09] | 325 |                         if ( curr ) {
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 | 326 |                                 &tp = Curr( si );
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 | 327 |                                 T * n = pred( *seq, Curr( si ) );
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 | 328 |                                 curr = n == &tail( *seq ) ? 0p : n;
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 | 329 |                         } else &tp = 0p;
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 | 330 |                         return &tp != 0p;
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 | 331 |                 }
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 | 332 |         } // distribution
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 | 333 | } // distribution
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| [e43aa14] | 334 | 
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| [a3a76ea] | 335 | #endif
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