ladybird/Userland/Libraries/LibGfx/Font/FontDatabase.cpp
Shannon Booth e2e7c4d574 Everywhere: Use to_number<T> instead of to_{int,uint,float,double}
In a bunch of cases, this actually ends up simplifying the code as
to_number will handle something such as:

```
Optional<I> opt;
if constexpr (IsSigned<I>)
    opt = view.to_int<I>();
else
    opt = view.to_uint<I>();
```

For us.

The main goal here however is to have a single generic number conversion
API between all of the String classes.
2023-12-23 20:41:07 +01:00

252 lines
8.3 KiB
C++

/*
* Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#include <AK/DeprecatedFlyString.h>
#include <AK/FlyString.h>
#include <AK/LexicalPath.h>
#include <AK/Queue.h>
#include <AK/QuickSort.h>
#include <LibCore/Resource.h>
#include <LibFileSystem/FileSystem.h>
#include <LibGfx/Font/Font.h>
#include <LibGfx/Font/FontDatabase.h>
#include <LibGfx/Font/OpenType/Font.h>
#include <LibGfx/Font/Typeface.h>
#include <LibGfx/Font/WOFF/Font.h>
namespace Gfx {
FontDatabase& FontDatabase::the()
{
static FontDatabase s_the;
return s_the;
}
static RefPtr<Font> s_default_font;
static ByteString s_default_font_query;
static RefPtr<Font> s_window_title_font;
static ByteString s_window_title_font_query;
static RefPtr<Font> s_fixed_width_font;
static ByteString s_fixed_width_font_query;
void FontDatabase::set_default_font_query(ByteString query)
{
if (s_default_font_query == query)
return;
s_default_font_query = move(query);
s_default_font = nullptr;
}
ByteString FontDatabase::default_font_query()
{
return s_default_font_query;
}
void FontDatabase::set_window_title_font_query(ByteString query)
{
if (s_window_title_font_query == query)
return;
s_window_title_font_query = move(query);
s_window_title_font = nullptr;
}
ByteString FontDatabase::window_title_font_query()
{
return s_window_title_font_query;
}
Font& FontDatabase::default_font()
{
if (!s_default_font) {
VERIFY(!s_default_font_query.is_empty());
s_default_font = FontDatabase::the().get_by_name(s_default_font_query);
VERIFY(s_default_font);
}
return *s_default_font;
}
Font& FontDatabase::window_title_font()
{
if (!s_window_title_font) {
VERIFY(!s_window_title_font_query.is_empty());
s_window_title_font = FontDatabase::the().get_by_name(s_window_title_font_query);
VERIFY(s_window_title_font);
}
return *s_window_title_font;
}
void FontDatabase::set_fixed_width_font_query(ByteString query)
{
if (s_fixed_width_font_query == query)
return;
s_fixed_width_font_query = move(query);
s_fixed_width_font = nullptr;
}
ByteString FontDatabase::fixed_width_font_query()
{
return s_fixed_width_font_query;
}
Font& FontDatabase::default_fixed_width_font()
{
if (!s_fixed_width_font) {
VERIFY(!s_fixed_width_font_query.is_empty());
s_fixed_width_font = FontDatabase::the().get_by_name(s_fixed_width_font_query);
VERIFY(s_fixed_width_font);
}
return *s_fixed_width_font;
}
struct FontDatabase::Private {
HashMap<ByteString, NonnullRefPtr<Gfx::Font>, CaseInsensitiveStringTraits> full_name_to_font_map;
HashMap<FlyString, Vector<NonnullRefPtr<Typeface>>, AK::ASCIICaseInsensitiveFlyStringTraits> typefaces;
};
void FontDatabase::load_all_fonts_from_uri(StringView uri)
{
auto root_or_error = Core::Resource::load_from_uri(uri);
if (root_or_error.is_error()) {
dbgln("FontDatabase::load_all_fonts_from_uri('{}'): {}", uri, root_or_error.error());
return;
}
auto root = root_or_error.release_value();
root->for_each_descendant_file([this](Core::Resource const& resource) -> IterationDecision {
auto path = LexicalPath(resource.uri().bytes_as_string_view());
if (path.has_extension(".font"sv)) {
if (auto font_or_error = Gfx::BitmapFont::try_load_from_resource(resource); !font_or_error.is_error()) {
auto font = font_or_error.release_value();
m_private->full_name_to_font_map.set(font->qualified_name().to_byte_string(), *font);
auto typeface = get_or_create_typeface(font->family(), font->variant());
typeface->add_bitmap_font(font);
}
} else if (path.has_extension(".ttf"sv)) {
// FIXME: What about .otf
if (auto font_or_error = OpenType::Font::try_load_from_resource(resource); !font_or_error.is_error()) {
auto font = font_or_error.release_value();
auto typeface = get_or_create_typeface(font->family(), font->variant());
typeface->set_vector_font(move(font));
}
} else if (path.has_extension(".woff"sv)) {
if (auto font_or_error = WOFF::Font::try_load_from_resource(resource); !font_or_error.is_error()) {
auto font = font_or_error.release_value();
auto typeface = get_or_create_typeface(font->family(), font->variant());
typeface->set_vector_font(move(font));
}
}
return IterationDecision::Continue;
});
}
FontDatabase::FontDatabase()
: m_private(make<Private>())
{
load_all_fonts_from_uri("resource://fonts"sv);
}
void FontDatabase::for_each_font(Function<void(Gfx::Font const&)> callback)
{
Vector<RefPtr<Gfx::Font>> fonts;
fonts.ensure_capacity(m_private->full_name_to_font_map.size());
for (auto& it : m_private->full_name_to_font_map)
fonts.append(it.value);
quick_sort(fonts, [](auto& a, auto& b) { return a->qualified_name() < b->qualified_name(); });
for (auto& font : fonts)
callback(*font);
}
void FontDatabase::for_each_fixed_width_font(Function<void(Gfx::Font const&)> callback)
{
Vector<RefPtr<Gfx::Font>> fonts;
fonts.ensure_capacity(m_private->full_name_to_font_map.size());
for (auto& it : m_private->full_name_to_font_map) {
if (it.value->is_fixed_width())
fonts.append(it.value);
}
quick_sort(fonts, [](auto& a, auto& b) { return a->qualified_name() < b->qualified_name(); });
for (auto& font : fonts)
callback(*font);
}
RefPtr<Gfx::Font> FontDatabase::get_by_name(StringView name)
{
auto it = m_private->full_name_to_font_map.find(name);
if (it == m_private->full_name_to_font_map.end()) {
auto parts = name.split_view(" "sv);
if (parts.size() >= 4) {
auto slope = parts.take_last().to_number<int>().value_or(0);
auto weight = parts.take_last().to_number<int>().value_or(0);
auto size = parts.take_last().to_number<int>().value_or(0);
auto family = MUST(String::join(' ', parts));
return get(family, size, weight, Gfx::FontWidth::Normal, slope);
}
dbgln("Font lookup failed: '{}'", name);
return nullptr;
}
return it->value;
}
RefPtr<Gfx::Font> FontDatabase::get(FlyString const& family, float point_size, unsigned weight, unsigned width, unsigned slope, Font::AllowInexactSizeMatch allow_inexact_size_match)
{
auto it = m_private->typefaces.find(family);
if (it == m_private->typefaces.end())
return nullptr;
for (auto const& typeface : it->value) {
if (typeface->weight() == weight && typeface->width() == width && typeface->slope() == slope)
return typeface->get_font(point_size, allow_inexact_size_match);
}
return nullptr;
}
RefPtr<Gfx::Font> FontDatabase::get(FlyString const& family, FlyString const& variant, float point_size, Font::AllowInexactSizeMatch allow_inexact_size_match)
{
auto it = m_private->typefaces.find(family);
if (it == m_private->typefaces.end())
return nullptr;
for (auto const& typeface : it->value) {
if (typeface->variant() == variant)
return typeface->get_font(point_size, allow_inexact_size_match);
}
return nullptr;
}
RefPtr<Typeface> FontDatabase::get_or_create_typeface(FlyString const& family, FlyString const& variant)
{
auto it = m_private->typefaces.find(family);
if (it != m_private->typefaces.end()) {
for (auto const& typeface : it->value) {
if (typeface->variant() == variant)
return typeface;
}
}
auto typeface = adopt_ref(*new Typeface(family, variant));
m_private->typefaces.ensure(family).append(typeface);
return typeface;
}
void FontDatabase::for_each_typeface(Function<void(Typeface const&)> callback)
{
for (auto const& it : m_private->typefaces) {
for (auto const& jt : it.value) {
callback(*jt);
}
}
}
void FontDatabase::for_each_typeface_with_family_name(FlyString const& family_name, Function<void(Typeface const&)> callback)
{
auto it = m_private->typefaces.find(family_name);
if (it == m_private->typefaces.end())
return;
for (auto const& typeface : it->value)
callback(*typeface);
}
}