[5e82d56] | 1 | #pragma once
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| 2 |
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[7d4ce2a] | 3 | #include "bits/collection.hfa"
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[5e82d56] | 4 |
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[9536761] | 5 | // A Queue(T) is a Collection(T) defining the ordering that nodes are returned by drop() in the same order from those
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| 6 | // added by add(). T must be a public descendant of uColable.
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| 7 |
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| 8 | // The implementation is a typical singly-linked list, except the next field of the last element points to itself
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| 9 | // instead of being null.
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| 10 |
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[fd54fef] | 11 | forall( T & | { T *& Next ( T * ); } ) {
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[5e82d56] | 12 | struct Queue {
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| 13 | inline Collection; // Plan 9 inheritance
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| 14 | T * last; // last element, or 0 if queue is empty.
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| 15 | };
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| 16 |
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[c407434e] | 17 | static inline {
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[5e82d56] | 18 | // wrappers to make Collection have T
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[a78c3ff] | 19 | T & head( Queue(T) & q ) with( q ) {
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| 20 | return *(T *)head( (Collection &)q );
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[5e82d56] | 21 | } // post: empty() & head() == 0 | !empty() & head() in *q
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| 22 |
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| 23 | void ?{}( Queue(T) &, const Queue(T) & ) = void; // no copy
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| 24 | Queue(T) & ?=?( const Queue(T) & ) = void; // no assignment
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| 25 |
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| 26 | void ?{}( Queue(T) & q ) with( q ) {
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| 27 | ((Collection &)q){};
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| 28 | last = 0p;
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| 29 | } // post: empty()
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| 30 |
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[a78c3ff] | 31 | T & tail( Queue(T) & q ) with( q ) {
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| 32 | return *last;
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[5e82d56] | 33 | }
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| 34 |
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[a5a67ab8] | 35 | T * succ( Queue(T) & q, T * n ) with( q ) { // pre: *n in *q
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[7c1144b] | 36 | #ifdef __CFA_DEBUG__
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[a5a67ab8] | 37 | if ( ! listed( n ) ) abort( "(Queue &)%p.succ( %p ) : Node is not on a list.", &q, n );
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[7c1144b] | 38 | #endif // __CFA_DEBUG__
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[58870e6b] | 39 | return (Next( n ) == n) ? 0p : Next( n );
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[5e82d56] | 40 | } // post: n == tail() & succ(n) == 0 | n != tail() & *succ(n) in *q
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| 41 |
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[a3a76ea] | 42 | T & addHead( Queue(T) & q, T & n ) with( q ) {
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[7c1144b] | 43 | #ifdef __CFA_DEBUG__
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[a78c3ff] | 44 | if ( listed( &n ) ) abort( "(Queue &)%p.addHead( %p ) : Node is already on another list.", &q, &n );
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[7c1144b] | 45 | #endif // __CFA_DEBUG__
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[5e82d56] | 46 | if ( last ) {
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[58870e6b] | 47 | Next( &n ) = &head( q );
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[a78c3ff] | 48 | q.root = &n;
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[5e82d56] | 49 | } else {
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[a78c3ff] | 50 | root = last = &n;
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[58870e6b] | 51 | Next( &n ) = &n; // last node points to itself
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[5e82d56] | 52 | }
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[a3a76ea] | 53 | return n;
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[5e82d56] | 54 | }
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| 55 |
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[a3a76ea] | 56 | T & addTail( Queue(T) & q, T & n ) with( q ) {
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[7c1144b] | 57 | #ifdef __CFA_DEBUG__
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[a78c3ff] | 58 | if ( listed( &n ) ) abort( "(Queue &)%p.addTail( %p ) : Node is already on another list.", &q, &n );
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[7c1144b] | 59 | #endif // __CFA_DEBUG__
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[58870e6b] | 60 | if ( last ) Next( last ) = &n;
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[a78c3ff] | 61 | else root = &n;
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| 62 | last = &n;
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[58870e6b] | 63 | Next( &n ) = &n; // last node points to itself
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[a3a76ea] | 64 | return n;
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[5e82d56] | 65 | }
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| 66 |
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[a3a76ea] | 67 | T & add( Queue(T) & q, T & n ) with( q ) {
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| 68 | return addTail( q, n );
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[5e82d56] | 69 | }
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| 70 |
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[a78c3ff] | 71 | T & dropHead( Queue(T) & q ) with( q ) {
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[a5a67ab8] | 72 | T & t = head( q );
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[5e82d56] | 73 | if ( root ) {
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[accc5dbb] | 74 | root = Next( (T *)root );
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[a5a67ab8] | 75 | if ( &head( q ) == &t ) {
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[5e82d56] | 76 | root = last = 0p; // only one element
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| 77 | }
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[58870e6b] | 78 | Next( &t ) = 0p;
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[5e82d56] | 79 | }
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[a5a67ab8] | 80 | return t;
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[5e82d56] | 81 | }
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| 82 |
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[a78c3ff] | 83 | T & drop( Queue(T) & q ) with( q ) {
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[5e82d56] | 84 | return dropHead( q );
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| 85 | }
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| 86 |
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[a3a76ea] | 87 | T & remove( Queue(T) & q, T & n ) with( q ) { // O(n)
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[7c1144b] | 88 | #ifdef __CFA_DEBUG__
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[a78c3ff] | 89 | if ( ! listed( (Colable &)n ) ) abort( "(Queue &)%p.remove( %p ) : Node is not on a list.", &q, &n );
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[7c1144b] | 90 | #endif // __CFA_DEBUG__
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[58870e6b] | 91 | T * prev = 0p;
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| 92 | T * curr = (T *)root;
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[5e82d56] | 93 | for ( ;; ) {
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[58870e6b] | 94 | if ( &n == curr ) { // found => remove
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[a5a67ab8] | 95 | if ( (T *)root == &n ) {
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[5e82d56] | 96 | dropHead( q );
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[a5a67ab8] | 97 | } else if ( last == &n ) {
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[58870e6b] | 98 | last = prev;
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| 99 | Next( last ) = last;
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[5e82d56] | 100 | } else {
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| 101 | Next( prev ) = Next( curr );
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| 102 | }
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[58870e6b] | 103 | Next( &n ) = 0p;
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[5e82d56] | 104 | break;
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| 105 | }
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| 106 | // not found => error
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[7c1144b] | 107 | #ifdef __CFA_DEBUG__
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[58870e6b] | 108 | if ( curr == last ) abort( "(Queue &)%p.remove( %p ) : Node is not in list.", &q, &n );
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[7c1144b] | 109 | #endif // __CFA_DEBUG__
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[58870e6b] | 110 | prev = curr;
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| 111 | curr = Next( curr );
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[5e82d56] | 112 | }
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[a3a76ea] | 113 | return n;
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[5e82d56] | 114 | } // post: ! listed( n )
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| 115 |
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[9536761] | 116 | T & dropTail( Queue(T) & q ) with( q ) { // O(n)
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[a78c3ff] | 117 | T & n = tail( q );
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| 118 | return &n ? remove( q, n ), n : *0p;
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[5e82d56] | 119 | }
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| 120 |
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| 121 | // Transfer the "from" list to the end of queue sequence; the "from" list is empty after the transfer.
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| 122 | void transfer( Queue(T) & q, Queue(T) & from ) with( q ) {
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| 123 | if ( empty( from ) ) return; // "from" list empty ?
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| 124 | if ( empty( q ) ) { // "to" list empty ?
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| 125 | root = from.root;
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| 126 | } else { // "to" list not empty
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[58870e6b] | 127 | Next( last ) = &head( from );
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[5e82d56] | 128 | }
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| 129 | last = from.last;
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| 130 | from.root = from.last = 0p; // mark "from" list empty
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| 131 | }
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| 132 |
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| 133 | // Transfer the "from" list up to node "n" to the end of queue list; the "from" list becomes the list after node "n".
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| 134 | // Node "n" must be in the "from" list.
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[a78c3ff] | 135 | void split( Queue(T) & q, Queue(T) & from, T & n ) with( q ) {
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[7c1144b] | 136 | #ifdef __CFA_DEBUG__
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[a78c3ff] | 137 | if ( ! listed( (Colable &)n ) ) abort( "(Queue &)%p.split( %p ) : Node is not on a list.", &q, &n );
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[7c1144b] | 138 | #endif // __CFA_DEBUG__
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[5e82d56] | 139 | Queue(T) to;
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| 140 | to.root = from.root; // start of "to" list
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[a78c3ff] | 141 | to.last = &n; // end of "to" list
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[58870e6b] | 142 | from.root = Next( &n ); // start of "from" list
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[a5a67ab8] | 143 | if ( &n == &head( from ) ) { // last node in list ?
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[5e82d56] | 144 | from.root = from.last = 0p; // mark "from" list empty
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| 145 | } else {
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[58870e6b] | 146 | Next( &n ) = &n; // fix end of "to" list
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[5e82d56] | 147 | }
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| 148 | transfer( q, to );
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| 149 | }
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| 150 | } // distribution
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| 151 | } // distribution
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| 152 |
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[fd54fef] | 153 | forall( T & | { T *& Next ( T * ); } ) {
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[5e82d56] | 154 | struct QueueIter {
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| 155 | inline ColIter; // Plan 9 inheritance
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[c407434e] | 156 | };
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[5e82d56] | 157 |
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[c407434e] | 158 | static inline {
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[5e82d56] | 159 | void ?{}( QueueIter(T) & qi ) with( qi ) {
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| 160 | ((ColIter &)qi){};
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| 161 | } // post: curr == 0p
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| 162 |
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[9536761] | 163 | // create an iterator active in queue q
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[5e82d56] | 164 | void ?{}( QueueIter(T) & qi, Queue(T) & q ) with( qi ) {
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[a78c3ff] | 165 | curr = &head( q );
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[5e82d56] | 166 | } // post: curr = {e in q}
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| 167 |
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[a78c3ff] | 168 | void ?{}( QueueIter(T) & qi, T & start ) with( qi ) {
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| 169 | curr = &start;
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[5e82d56] | 170 | } // post: curr = {e in q}
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| 171 |
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[9536761] | 172 | // make existing iterator active in queue q
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[5e82d56] | 173 | void over( QueueIter(T) & qi, Queue(T) & q ) with( qi ) {
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[a78c3ff] | 174 | curr = &head( q );
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[5e82d56] | 175 | } // post: curr = {e in q}
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| 176 |
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[9536761] | 177 | bool ?|?( QueueIter(T) & qi, T && tp ) with( qi ) {
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[5e82d56] | 178 | if ( curr ) {
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[3d0560d] | 179 | &tp = Curr( qi );
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[58870e6b] | 180 | T * n = Next( Curr( qi ) );
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[5e82d56] | 181 | curr = (n == Curr( qi ) ) ? 0p : n;
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[3d0560d] | 182 | } else &tp = 0p;
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| 183 | return &tp != 0p;
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[5e82d56] | 184 | }
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[9536761] | 185 | // post: elts == null & !operator|(tp) | elts != null & *tp' in elts & elts' == elts - *tp & operator|(tp)
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[5e82d56] | 186 | } // distribution
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| 187 | } // distribution
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