ladybird/Userland/Libraries/LibWeb/CSS/GridTrackSize.cpp
Aliaksandr Kalenik cfcc459140 LibWeb: Fix grid line name placement when repeat() is used
Before this change, parsed grid-template-columns/grid-template-rows
were represented as two lists: line names and track sizes. The problem
with this approach is that it erases the relationship between tracks
and their names, which results in unnecessarily complicated code that
restores this data (incorrectly if repeat() is involved) during layout.
This change solves that by representing line definitions as a list of
sizes and names in the order they were defined.

Visual progression https://genius.com/
2024-01-05 13:21:09 +01:00

252 lines
6.3 KiB
C++

/*
* Copyright (c) 2022, Martin Falisse <mfalisse@outlook.com>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#include "GridTrackSize.h"
#include <AK/String.h>
#include <LibWeb/CSS/Size.h>
namespace Web::CSS {
GridSize::GridSize(LengthPercentage length_percentage)
: m_type(Type::LengthPercentage)
, m_value(move(length_percentage))
{
}
GridSize::GridSize(Flex flex_factor)
: m_type(Type::FlexibleLength)
, m_value(move(flex_factor))
{
}
GridSize::GridSize(Type type)
: m_value { Empty() }
{
VERIFY(type == Type::MinContent || type == Type::MaxContent);
m_type = type;
}
GridSize::GridSize()
: m_type(Type::LengthPercentage)
, m_value { Length::make_auto() }
{
}
GridSize::~GridSize() = default;
bool GridSize::is_auto(Layout::AvailableSize const& available_size) const
{
if (m_type == Type::LengthPercentage) {
auto& length_percentage = m_value.get<LengthPercentage>();
if (length_percentage.contains_percentage())
return !available_size.is_definite();
return length_percentage.is_auto();
}
return false;
}
bool GridSize::is_fixed(Layout::AvailableSize const& available_size) const
{
if (m_type == Type::LengthPercentage) {
auto& length_percentage = m_value.get<LengthPercentage>();
if (length_percentage.contains_percentage())
return available_size.is_definite();
return !length_percentage.is_auto();
}
return false;
}
bool GridSize::is_intrinsic(Layout::AvailableSize const& available_size) const
{
return is_auto(available_size) || is_max_content() || is_min_content();
}
GridSize GridSize::make_auto()
{
return GridSize(CSS::Length::make_auto());
}
Size GridSize::css_size() const
{
VERIFY(m_type == Type::LengthPercentage);
auto& length_percentage = m_value.get<LengthPercentage>();
if (length_percentage.is_auto())
return CSS::Size::make_auto();
if (length_percentage.is_length())
return CSS::Size::make_length(length_percentage.length());
if (length_percentage.is_calculated())
return CSS::Size::make_calculated(length_percentage.calculated());
return CSS::Size::make_percentage(length_percentage.percentage());
}
String GridSize::to_string() const
{
switch (m_type) {
case Type::LengthPercentage:
return m_value.get<LengthPercentage>().to_string();
case Type::FlexibleLength:
return m_value.get<Flex>().to_string();
case Type::MaxContent:
return "max-content"_string;
case Type::MinContent:
return "min-content"_string;
}
VERIFY_NOT_REACHED();
}
GridMinMax::GridMinMax(GridSize min_grid_size, GridSize max_grid_size)
: m_min_grid_size(min_grid_size)
, m_max_grid_size(max_grid_size)
{
}
String GridMinMax::to_string() const
{
StringBuilder builder;
builder.append("minmax("sv);
builder.appendff("{}", m_min_grid_size.to_string());
builder.append(", "sv);
builder.appendff("{}", m_max_grid_size.to_string());
builder.append(")"sv);
return MUST(builder.to_string());
}
GridRepeat::GridRepeat(GridTrackSizeList grid_track_size_list, int repeat_count)
: m_type(Type::Default)
, m_grid_track_size_list(grid_track_size_list)
, m_repeat_count(repeat_count)
{
}
GridRepeat::GridRepeat(GridTrackSizeList grid_track_size_list, Type type)
: m_type(type)
, m_grid_track_size_list(grid_track_size_list)
{
}
GridRepeat::GridRepeat()
{
}
String GridRepeat::to_string() const
{
StringBuilder builder;
builder.append("repeat("sv);
switch (m_type) {
case Type::AutoFit:
builder.append("auto-fill"sv);
break;
case Type::AutoFill:
builder.append("auto-fit"sv);
break;
case Type::Default:
builder.appendff("{}", m_repeat_count);
break;
default:
VERIFY_NOT_REACHED();
}
builder.append(", "sv);
builder.appendff("{}", m_grid_track_size_list.to_string());
builder.append(")"sv);
return MUST(builder.to_string());
}
ExplicitGridTrack::ExplicitGridTrack(CSS::GridMinMax grid_minmax)
: m_type(Type::MinMax)
, m_grid_minmax(grid_minmax)
{
}
ExplicitGridTrack::ExplicitGridTrack(CSS::GridRepeat grid_repeat)
: m_type(Type::Repeat)
, m_grid_repeat(grid_repeat)
{
}
ExplicitGridTrack::ExplicitGridTrack(CSS::GridSize grid_size)
: m_type(Type::Default)
, m_grid_size(grid_size)
{
}
String ExplicitGridTrack::to_string() const
{
switch (m_type) {
case Type::MinMax:
return m_grid_minmax.to_string();
case Type::Repeat:
return m_grid_repeat.to_string();
case Type::Default:
return m_grid_size.to_string();
default:
VERIFY_NOT_REACHED();
}
}
String GridLineNames::to_string() const
{
StringBuilder builder;
builder.append("["sv);
builder.join(' ', names);
builder.append("]"sv);
return MUST(builder.to_string());
}
GridTrackSizeList::GridTrackSizeList(Vector<Variant<ExplicitGridTrack, GridLineNames>>&& list)
: m_list(move(list))
{
}
GridTrackSizeList::GridTrackSizeList()
{
}
GridTrackSizeList GridTrackSizeList::make_none()
{
return GridTrackSizeList();
}
String GridTrackSizeList::to_string() const
{
StringBuilder builder;
for (auto const& line_definition_or_name : m_list) {
if (!builder.is_empty())
builder.append(" "sv);
if (line_definition_or_name.has<ExplicitGridTrack>()) {
builder.append(line_definition_or_name.get<ExplicitGridTrack>().to_string());
} else if (line_definition_or_name.has<GridLineNames>()) {
auto const& line_names = line_definition_or_name.get<GridLineNames>();
builder.append(line_names.to_string());
}
}
return MUST(builder.to_string());
}
Vector<ExplicitGridTrack> GridTrackSizeList::track_list() const
{
Vector<ExplicitGridTrack> track_list;
for (auto const& line_definition_or_name : m_list) {
if (line_definition_or_name.has<ExplicitGridTrack>())
track_list.append(line_definition_or_name.get<ExplicitGridTrack>());
}
return track_list;
}
bool GridTrackSizeList::operator==(GridTrackSizeList const& other) const
{
if (m_list.size() != other.m_list.size())
return false;
for (size_t i = 0; i < m_list.size(); ++i) {
if (m_list[i] != other.m_list[i])
return false;
}
return true;
}
}