kakoune/src/selection.cc

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#include "selection.hh"
#include "utf8.hh"
#include "buffer_utils.hh"
namespace Kakoune
{
void Selection::merge_with(const Selection& range)
{
m_cursor = range.m_cursor;
if (m_anchor < m_cursor)
m_anchor = std::min(m_anchor, range.m_anchor);
if (m_anchor > m_cursor)
m_anchor = std::max(m_anchor, range.m_anchor);
}
SelectionList::SelectionList(Buffer& buffer, Selection s, size_t timestamp)
: m_buffer(&buffer), m_selections({ s }), m_timestamp(timestamp)
{
check_invariant();
}
SelectionList::SelectionList(Buffer& buffer, Selection s)
: SelectionList(buffer, s, buffer.timestamp())
{}
SelectionList::SelectionList(Buffer& buffer, std::vector<Selection> s, size_t timestamp)
: m_buffer(&buffer), m_selections(std::move(s)), m_timestamp(timestamp)
{
kak_assert(size() > 0);
check_invariant();
}
SelectionList::SelectionList(Buffer& buffer, std::vector<Selection> s)
: SelectionList(buffer, std::move(s), buffer.timestamp())
{}
namespace
{
ByteCoord update_insert(ByteCoord coord, ByteCoord begin, ByteCoord end)
{
if (coord < begin)
return coord;
if (begin.line == coord.line)
coord.column += end.column - begin.column;
coord.line += end.line - begin.line;
kak_assert(coord.line >= 0 and coord.column >= 0);
return coord;
}
ByteCoord update_erase(ByteCoord coord, ByteCoord begin, ByteCoord end)
{
if (coord < begin)
return coord;
if (coord <= end)
return begin;
if (end.line == coord.line)
coord.column -= end.column - begin.column;
coord.line -= end.line - begin.line;
kak_assert(coord.line >= 0 and coord.column >= 0);
return coord;
}
ByteCoord update_pos(ByteCoord coord, const Buffer::Change& change)
{
if (change.type == Buffer::Change::Insert)
return update_insert(coord, change.begin, change.end);
else
return update_erase(coord, change.begin, change.end);
}
// This tracks position changes for changes that are done
// in a forward way (each change takes place at a position)
// *after* the previous one.
struct PositionChangesTracker
{
ByteCoord last_pos;
ByteCoord pos_change;
void update(const Buffer::Change& change)
{
if (change.type == Buffer::Change::Insert)
{
pos_change.line += change.end.line - change.begin.line;
if (change.begin.line != last_pos.line)
pos_change.column = 0;
pos_change.column += change.end.column - change.begin.column;
last_pos = change.end;
}
else if (change.type == Buffer::Change::Erase)
{
pos_change.line -= change.end.line - change.begin.line;
if (last_pos.line != change.end.line)
pos_change.column = 0;
pos_change.column -= change.end.column - change.begin.column;
last_pos = change.begin;
}
}
void update(const Buffer& buffer, size_t& timestamp)
{
for (auto& change : buffer.changes_since(timestamp))
update(change);
timestamp = buffer.timestamp();
}
ByteCoord get_new_coord(ByteCoord coord)
{
if (last_pos.line - pos_change.line == coord.line)
coord.column += pos_change.column;
coord.line += pos_change.line;
return coord;
}
void update_sel(Selection& sel)
{
sel.anchor() = get_new_coord(sel.anchor());
sel.cursor() = get_new_coord(sel.cursor());
}
};
bool relevant(const Buffer::Change& change, ByteCoord coord)
{
return change.type == Buffer::Change::Insert ? change.begin <= coord
: change.begin < coord;
}
void update_forward(memoryview<Buffer::Change> changes, std::vector<Selection>& selections)
{
PositionChangesTracker changes_tracker;
auto change_it = changes.begin();
auto advance_while_relevant = [&](const ByteCoord& pos) mutable {
while (relevant(*change_it, changes_tracker.get_new_coord(pos)) and
change_it != changes.end())
changes_tracker.update(*change_it++);
};
for (auto& sel : selections)
{
auto& sel_min = sel.min();
auto& sel_max = sel.max();
advance_while_relevant(sel_min);
sel_min = changes_tracker.get_new_coord(sel_min);
advance_while_relevant(sel_max);
sel_max = changes_tracker.get_new_coord(sel_max);
}
}
void update_backward(memoryview<Buffer::Change> changes, std::vector<Selection>& selections)
{
PositionChangesTracker changes_tracker;
using ReverseIt = std::reverse_iterator<const Buffer::Change*>;
auto change_it = ReverseIt(changes.end());
auto change_end = ReverseIt(changes.begin());
auto advance_while_relevant = [&](const ByteCoord& pos) mutable {
while (change_it != change_end)
{
auto change = *change_it;
change.begin = changes_tracker.get_new_coord(change.begin);
change.end = changes_tracker.get_new_coord(change.end);
if (not relevant(change, changes_tracker.get_new_coord(pos)))
break;
changes_tracker.update(change);
++change_it;
}
};
for (auto& sel : selections)
{
auto& sel_min = sel.min();
auto& sel_max = sel.max();
advance_while_relevant(sel_min);
sel_min = changes_tracker.get_new_coord(sel_min);
advance_while_relevant(sel_max);
sel_max = changes_tracker.get_new_coord(sel_max);
}
}
}
void SelectionList::update()
{
if (m_timestamp == m_buffer->timestamp())
return;
auto forward = [](const Buffer::Change& lhs, const Buffer::Change& rhs)
{ return lhs.begin < rhs.begin; };
auto backward = [](const Buffer::Change& lhs, const Buffer::Change& rhs)
{ return lhs.begin > rhs.end; };
auto changes = m_buffer->changes_since(m_timestamp);
auto change_it = changes.begin();
while (change_it != changes.end())
{
auto forward_end = std::is_sorted_until(change_it, changes.end(), forward);
auto backward_end = std::is_sorted_until(change_it, changes.end(), backward);
if (forward_end >= backward_end)
{
update_forward({ change_it, forward_end }, m_selections);
change_it = forward_end;
}
else
{
update_backward({ change_it, backward_end }, m_selections);
change_it = backward_end;
}
kak_assert(std::is_sorted(m_selections.begin(), m_selections.end(),
compare_selections));
}
for (auto& sel : m_selections)
{
sel.anchor() = m_buffer->clamp(sel.anchor());
sel.cursor() = m_buffer->clamp(sel.cursor());
}
m_selections.erase(merge_overlapping(begin(), end(), m_main, overlaps), end());
check_invariant();
m_timestamp = m_buffer->timestamp();
}
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void SelectionList::check_invariant() const
{
#ifdef KAK_DEBUG
auto& buffer = this->buffer();
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kak_assert(size() > 0);
kak_assert(m_main < size());
for (size_t i = 0; i < size(); ++i)
{
auto& sel = (*this)[i];
if (i+1 < size())
kak_assert((*this)[i].min() <= (*this)[i+1].min());
kak_assert(buffer.is_valid(sel.anchor()));
kak_assert(buffer.is_valid(sel.cursor()));
kak_assert(not buffer.is_end(sel.anchor()));
kak_assert(not buffer.is_end(sel.cursor()));
kak_assert(utf8::is_character_start(buffer.byte_at(sel.anchor())));
kak_assert(utf8::is_character_start(buffer.byte_at(sel.cursor())));
}
#endif
}
void SelectionList::sort_and_merge_overlapping()
{
if (size() == 1)
return;
const auto& main = this->main();
const auto main_begin = main.min();
m_main = std::count_if(begin(), end(), [&](const Selection& sel) {
auto begin = sel.min();
if (begin == main_begin)
return &sel < &main;
else
return begin < main_begin;
});
std::stable_sort(begin(), end(), compare_selections);
m_selections.erase(merge_overlapping(begin(), end(), m_main, overlaps), end());
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}
namespace
{
inline void _avoid_eol(const Buffer& buffer, ByteCoord& coord)
{
const auto column = coord.column;
const auto& line = buffer[coord.line];
if (column != 0 and column == line.length() - 1)
coord.column = line.byte_count_to(line.char_length() - 2);
}
inline void _avoid_eol(const Buffer& buffer, Selection& sel)
{
_avoid_eol(buffer, sel.anchor());
_avoid_eol(buffer, sel.cursor());
}
}
void SelectionList::avoid_eol()
{
update();
for (auto& sel : m_selections)
_avoid_eol(buffer(), sel);
}
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BufferIterator prepare_insert(Buffer& buffer, const Selection& sel, InsertMode mode)
{
switch (mode)
{
case InsertMode::Insert:
return buffer.iterator_at(sel.min());
case InsertMode::InsertCursor:
return buffer.iterator_at(sel.cursor());
case InsertMode::Replace:
return erase(buffer, sel);
case InsertMode::Append:
{
// special case for end of lines, append to current line instead
auto pos = buffer.iterator_at(sel.max());
return *pos == '\n' ? pos : utf8::next(pos);
}
case InsertMode::InsertAtLineBegin:
return buffer.iterator_at(sel.min().line);
case InsertMode::AppendAtLineEnd:
return buffer.iterator_at({sel.max().line, buffer[sel.max().line].length() - 1});
case InsertMode::InsertAtNextLineBegin:
return buffer.iterator_at(sel.max().line+1);
case InsertMode::OpenLineBelow:
return buffer.insert(buffer.iterator_at(sel.max().line + 1), "\n");
case InsertMode::OpenLineAbove:
return buffer.insert(buffer.iterator_at(sel.min().line), "\n");
}
kak_assert(false);
return {};
}
void SelectionList::insert(memoryview<String> strings, InsertMode mode)
{
if (strings.empty())
return;
update();
PositionChangesTracker changes_tracker;
for (size_t index = 0; index < m_selections.size(); ++index)
{
auto& sel = m_selections[index];
changes_tracker.update_sel(sel);
kak_assert(m_buffer->is_valid(sel.anchor()));
kak_assert(m_buffer->is_valid(sel.cursor()));
auto pos = prepare_insert(*m_buffer, sel, mode);
changes_tracker.update(*m_buffer, m_timestamp);
const String& str = strings[std::min(index, strings.size()-1)];
pos = m_buffer->insert(pos, str);
auto& change = m_buffer->changes_since(m_timestamp).back();
changes_tracker.update(change);
m_timestamp = m_buffer->timestamp();
if (mode == InsertMode::Replace)
{
sel.anchor() = change.begin;
sel.cursor() = m_buffer->char_prev(change.end);
}
else
{
sel.anchor() = m_buffer->clamp(update_insert(sel.anchor(), change.begin, change.end));
sel.cursor() = m_buffer->clamp(update_insert(sel.cursor(), change.begin, change.end));
}
}
check_invariant();
m_buffer->check_invariant();
}
void SelectionList::erase()
{
update();
PositionChangesTracker changes_tracker;
for (auto& sel : m_selections)
{
changes_tracker.update_sel(sel);
auto pos = Kakoune::erase(*m_buffer, sel);
sel.anchor() = sel.cursor() = m_buffer->clamp(pos.coord());
changes_tracker.update(*m_buffer, m_timestamp);
}
m_buffer->check_invariant();
}
void update_insert(std::vector<Selection>& sels, ByteCoord begin, ByteCoord end)
{
for (auto& sel : sels)
{
sel.anchor() = update_insert(sel.anchor(), begin, end);
sel.cursor() = update_insert(sel.cursor(), begin, end);
}
}
void update_erase(std::vector<Selection>& sels, ByteCoord begin, ByteCoord end)
{
for (auto& sel : sels)
{
sel.anchor() = update_erase(sel.anchor(), begin, end);
sel.cursor() = update_erase(sel.cursor(), begin, end);
}
}
}