The macro defined namespaces confused the hell out of lupdate and more or less broke translations permanently. Looks like the only way we can do it is to have a hardcoded namespace, which goes against my instinct, but honestly how likely is it that we'll change the namespace anyway (I guess forks might want to do it, but that's their problem ;) )
312 lines
7.0 KiB
C++
312 lines
7.0 KiB
C++
/***
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Olive - Non-Linear Video Editor
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Copyright (C) 2020 Olive Team
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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***/
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#include "timerange.h"
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#include <QtMath>
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#include <utility>
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namespace olive {
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TimeRange::TimeRange(const rational &in, const rational &out) :
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in_(in),
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out_(out)
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{
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normalize();
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}
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const rational &TimeRange::in() const
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{
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return in_;
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}
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const rational &TimeRange::out() const
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{
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return out_;
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}
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const rational &TimeRange::length() const
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{
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return length_;
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}
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void TimeRange::set_in(const rational &in)
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{
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in_ = in;
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normalize();
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}
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void TimeRange::set_out(const rational &out)
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{
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out_ = out;
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normalize();
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}
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void TimeRange::set_range(const rational &in, const rational &out)
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{
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in_ = in;
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out_ = out;
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normalize();
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}
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bool TimeRange::operator==(const TimeRange &r) const
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{
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return in() == r.in() && out() == r.out();
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}
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bool TimeRange::operator!=(const TimeRange &r) const
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{
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return in() != r.in() || out() != r.out();
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}
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bool TimeRange::OverlapsWith(const TimeRange &a, bool in_inclusive, bool out_inclusive) const
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{
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bool doesnt_overlap_in = (in_inclusive) ? (a.out() < in()) : (a.out() <= in());
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bool doesnt_overlap_out = (out_inclusive) ? (a.in() > out()) : (a.in() >= out());
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return !doesnt_overlap_in && !doesnt_overlap_out;
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}
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TimeRange TimeRange::Combined(const TimeRange &a) const
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{
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return Combine(a, *this);
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}
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bool TimeRange::Contains(const TimeRange &compare, bool in_inclusive, bool out_inclusive) const
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{
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bool contains_in = (in_inclusive) ? (compare.in() >= in()) : (compare.in() > in());
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bool contains_out = (out_inclusive) ? (compare.out() <= out()) : (compare.out() < out());
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return contains_in && contains_out;
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}
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bool TimeRange::Contains(const rational &r) const
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{
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return r >= in_ && r < out_;
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}
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TimeRange TimeRange::Combine(const TimeRange &a, const TimeRange &b)
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{
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return TimeRange(qMin(a.in(), b.in()),
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qMax(a.out(), b.out()));
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}
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TimeRange TimeRange::Intersected(const TimeRange &a) const
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{
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return Intersect(a, *this);
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}
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TimeRange TimeRange::Intersect(const TimeRange &a, const TimeRange &b)
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{
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return TimeRange(qMax(a.in(), b.in()),
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qMin(a.out(), b.out()));
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}
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TimeRange TimeRange::operator+(const rational &rhs) const
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{
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TimeRange answer(*this);
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answer += rhs;
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return answer;
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}
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TimeRange TimeRange::operator-(const rational &rhs) const
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{
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TimeRange answer(*this);
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answer -= rhs;
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return answer;
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}
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const TimeRange &TimeRange::operator+=(const rational &rhs)
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{
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set_range(in_ + rhs, out_ + rhs);
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return *this;
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}
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const TimeRange &TimeRange::operator-=(const rational &rhs)
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{
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set_range(in_ - rhs, out_ - rhs);
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return *this;
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}
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std::list<TimeRange> TimeRange::Split(const int &chunk_size) const
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{
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std::list<TimeRange> split_ranges;
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int start_time = qFloor(this->in().toDouble() / static_cast<double>(chunk_size)) * chunk_size;
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int end_time = qCeil(this->out().toDouble() / static_cast<double>(chunk_size)) * chunk_size;
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for (int i=start_time; i<end_time; i+=chunk_size) {
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split_ranges.push_back(TimeRange(qMax(this->in(), rational(i)),
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qMin(this->out(), rational(i + chunk_size))));
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}
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return split_ranges;
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}
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void TimeRange::normalize()
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{
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// If `out` is earlier than `in`, swap them
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if (out_ < in_)
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{
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std::swap(out_, in_);
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}
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// Calculate length
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length_ = out_ - in_;
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}
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void TimeRangeList::insert(TimeRange range_to_add)
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{
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// See if list contains this range
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if (contains(range_to_add)) {
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return;
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}
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// Does not contain range, so we'll almost certainly be adding it in some way
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for (int i=0;i<size();i++) {
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const TimeRange& compare = array_.at(i);
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if (compare.OverlapsWith(range_to_add)) {
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range_to_add = TimeRange::Combine(range_to_add, compare);
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array_.removeAt(i);
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i--;
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}
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}
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array_.append(range_to_add);
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}
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void TimeRangeList::remove(const TimeRange &remove)
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{
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int sz = this->size();
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for (int i=0;i<sz;i++) {
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TimeRange& compare = array_[i];
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if (remove.Contains(compare)) {
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// This element is entirely encompassed in this range, remove it
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array_.removeAt(i);
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i--;
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sz--;
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} else if (compare.Contains(remove, false, false)) {
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// The remove range is within this element, only choice is to split the element into two
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TimeRange new_range(remove.out(), compare.out());
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compare.set_out(remove.in());
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insert(new_range);
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break;
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} else if (compare.in() < remove.in() && compare.out() > remove.in()) {
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// This element's out point overlaps the range's in, we'll trim it
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compare.set_out(remove.in());
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} else if (compare.in() < remove.out() && compare.out() > remove.out()) {
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// This element's in point overlaps the range's out, we'll trim it
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compare.set_in(remove.out());
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}
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}
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}
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bool TimeRangeList::contains(const TimeRange &range, bool in_inclusive, bool out_inclusive) const
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{
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for (int i=0;i<size();i++) {
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if (array_.at(i).Contains(range, in_inclusive, out_inclusive)) {
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return true;
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}
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}
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return false;
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}
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void TimeRangeList::shift(const rational &diff)
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{
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for (int i=0; i<array_.size(); i++) {
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array_[i] += diff;
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}
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}
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void TimeRangeList::trim_in(const rational &diff)
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{
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// Re-do list since we want to handle overlaps
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TimeRangeList temp = *this;
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clear();
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foreach (TimeRange r, temp) {
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r.set_in(r.in() + diff);
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insert(r);
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}
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}
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void TimeRangeList::trim_out(const rational &diff)
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{
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// Re-do list since we want to handle overlaps
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TimeRangeList temp = *this;
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clear();
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foreach (TimeRange r, temp) {
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r.set_out(r.out() + diff);
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insert(r);
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}
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}
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TimeRangeList TimeRangeList::Intersects(const TimeRange &range) const
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{
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TimeRangeList intersect_list;
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for (int i=0;i<size();i++) {
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const TimeRange& compare = array_.at(i);
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if (compare.out() <= range.in() || compare.in() >= range.out()) {
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// No intersect
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continue;
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} else {
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// Crop the time range to the range and add it to the list
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TimeRange cropped(qMax(range.in(), compare.in()),
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qMin(range.out(), compare.out()));
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intersect_list.insert(cropped);
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}
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}
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return intersect_list;
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}
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uint qHash(const TimeRange &r, uint seed)
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{
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return qHash(r.in(), seed) ^ qHash(r.out(), seed);
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}
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}
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QDebug operator<<(QDebug debug, const olive::TimeRange &r)
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{
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debug.nospace() << r.in().toDouble() << " - " << r.out().toDouble();
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return debug.space();
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}
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QDebug operator<<(QDebug debug, const olive::TimeRangeList &r)
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{
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debug << r.internal_array();
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return debug.space();
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}
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