2020-07-27 08:18:54 +05:30
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#ifndef BASE_RUN_SET_H
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#define BASE_RUN_SET_H
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2013-07-09 02:14:09 +05:30
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2020-07-27 08:18:54 +05:30
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#include "base/run.h"
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2013-07-09 02:14:09 +05:30
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#include <algorithm>
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#include <set>
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//----------------------------------------------------------------
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namespace base {
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template <typename T>
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class run_set {
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public:
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2013-07-09 15:06:30 +05:30
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void clear() {
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runs_.clear();
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}
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2013-07-09 02:14:09 +05:30
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void add(T const &b) {
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add(run<T>(b, b + 1));
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}
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void add(T const &b, T const &e) {
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add(run<T>(b, e));
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}
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void add(run<T> const &r_) {
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run<T> r(r_);
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if (runs_.size()) {
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// Skip all blocks that end before r
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2013-07-09 18:25:21 +05:30
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const_iterator it = runs_.lower_bound(r);
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if (it != runs_.begin())
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--it;
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2013-07-09 15:06:30 +05:30
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while (it != runs_.end() && it->end_ < r.begin_)
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2013-07-09 02:14:09 +05:30
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++it;
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// work out which runs overlap
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if (it != runs_.end()) {
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r.begin_ = min_maybe(it->begin_, r.begin_);
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const_iterator first = it;
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2013-07-09 15:06:30 +05:30
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while (it != runs_.end() && it->begin_ <= r.end_) {
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2013-07-09 02:14:09 +05:30
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r.end_ = max_maybe(it->end_, r.end_);
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++it;
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}
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// remove overlapping runs
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runs_.erase(first, it);
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}
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}
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runs_.insert(r);
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}
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void merge(run_set<T> const &rhs) {
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for (const_iterator it = rhs.begin(); it != rhs.end(); ++it)
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add(*it);
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}
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bool member(T const &v) const {
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if (!runs_.size())
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return false;
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2013-08-08 15:19:59 +05:30
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typename rset::const_iterator it = runs_.lower_bound(run<T>(v));
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2013-07-09 02:14:09 +05:30
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2018-09-05 15:51:09 +05:30
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if (it != runs_.end() && it->begin_ == v)
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2013-07-09 02:14:09 +05:30
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return true;
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2018-09-05 15:51:09 +05:30
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if (it != runs_.begin()) {
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it--;
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2013-07-09 02:14:09 +05:30
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return it->contains(v);
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2018-09-05 15:51:09 +05:30
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}
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2013-07-09 02:14:09 +05:30
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return false;
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}
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struct compare_begin {
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bool operator ()(run<T> const &r1, run<T> const &r2) const {
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return r1.begin_ < r2.begin_;
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}
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};
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typedef std::set<run<T>, compare_begin> rset;
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typedef typename rset::const_iterator const_iterator;
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const_iterator begin() const {
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return runs_.begin();
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}
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const_iterator end() const {
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return runs_.end();
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}
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2020-07-28 19:38:00 +05:30
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const_iterator lower_bound(T const &b) const {
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return runs_.lower_bound(run<T>(b, b + 1));
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}
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const_iterator upper_bound(T const &b) const {
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return runs_.upper_bound(run<T>(b, b + 1));
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}
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2013-07-09 03:51:48 +05:30
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void negate() {
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rset replacement;
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if (runs_.begin() == runs_.end())
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replacement.insert(run<T>());
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else {
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2013-08-08 15:19:59 +05:30
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typename rset::const_iterator b = runs_.begin();
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2014-06-16 18:11:45 +05:30
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2014-09-08 15:37:46 +05:30
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// Some versions of gcc give a spurious
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// warning here. So we initialize it to
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// get round it.
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maybe last(0);
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last = b->end_;
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2013-07-09 03:51:48 +05:30
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if (b->begin_)
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replacement.insert(run<T>(maybe(), *(b->begin_)));
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++b;
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while (b != runs_.end()) {
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replacement.insert(run<T>(last, b->begin_));
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last = b->end_;
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++b;
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}
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if (last)
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replacement.insert(run<T>(last, maybe()));
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}
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runs_ = replacement;
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}
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2013-07-09 02:14:09 +05:30
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private:
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typedef typename run<T>::maybe maybe;
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static maybe min_maybe(maybe const &m1, maybe const &m2) {
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if (!m1 || !m2)
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return maybe();
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return maybe(std::min<T>(*m1, *m2));
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}
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static maybe max_maybe(maybe const &m1, maybe const &m2) {
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if (!m1 || !m2)
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return maybe();
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return maybe(std::max<T>(*m1, *m2));
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}
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2013-07-09 03:51:48 +05:30
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rset runs_;
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2013-07-09 02:14:09 +05:30
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};
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}
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//----------------------------------------------------------------
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#endif
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