Files
ladybird/Libraries/LibGfx/Font/Font.cpp
Andreas Kling 0fc0c84856 LibGfx: Add Font API to determine if it's (probably) an emoji font
This uses some heuristics since I don't think there's a simple way to
determine if something is "an emoji font".
2025-11-06 23:42:01 +01:00

207 lines
6.4 KiB
C++

/*
* Copyright (c) 2023, MacDue <macdue@dueutil.tech>
* Copyright (c) 2025, Aliaksandr Kalenik <kalenik.aliaksandr@gmail.com>
* Copyright (c) 2025, Andreas Kling <andreas@ladybird.org>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#include <AK/TypeCasts.h>
#include <AK/Utf16String.h>
#include <LibGfx/Font/Font.h>
#include <LibGfx/Font/FontDatabase.h>
#include <LibGfx/Font/TypefaceSkia.h>
#include <LibGfx/TextLayout.h>
#include <core/SkFont.h>
#include <core/SkFontMetrics.h>
#include <core/SkFontTypes.h>
#include <harfbuzz/hb-ot.h>
#include <harfbuzz/hb.h>
namespace Gfx {
Font::Font(NonnullRefPtr<Typeface const> typeface, float point_width, float point_height, unsigned dpi_x, unsigned dpi_y, FontVariationSettings const variations)
: m_typeface(move(typeface))
, m_point_width(point_width)
, m_point_height(point_height)
, m_font_variation_settings(move(variations))
{
float const units_per_em = m_typeface->units_per_em();
m_x_scale = (point_width * dpi_x) / (POINTS_PER_INCH * units_per_em);
m_y_scale = (point_height * dpi_y) / (POINTS_PER_INCH * units_per_em);
m_pixel_size = m_point_height * (DEFAULT_DPI / POINTS_PER_INCH);
auto const* sk_typeface = as<TypefaceSkia>(*m_typeface).sk_typeface();
SkFont const font { sk_ref_sp(sk_typeface), m_pixel_size };
SkFontMetrics skMetrics;
font.getMetrics(&skMetrics);
FontPixelMetrics metrics;
metrics.size = font.getSize();
metrics.x_height = skMetrics.fXHeight;
metrics.advance_of_ascii_zero = font.measureText("0", 1, SkTextEncoding::kUTF8);
metrics.ascent = -skMetrics.fAscent;
metrics.descent = skMetrics.fDescent;
metrics.line_gap = skMetrics.fLeading;
m_pixel_metrics = metrics;
}
ScaledFontMetrics Font::metrics() const
{
SkFontMetrics sk_metrics;
skia_font(1).getMetrics(&sk_metrics);
ScaledFontMetrics metrics;
metrics.ascender = -sk_metrics.fAscent;
metrics.descender = sk_metrics.fDescent;
metrics.line_gap = sk_metrics.fLeading;
metrics.x_height = sk_metrics.fXHeight;
return metrics;
}
float Font::width(Utf16View const& view) const { return measure_text_width(view, *this, {}); }
float Font::glyph_width(u32 code_point) const
{
auto string = Utf16String::from_code_point(code_point);
return measure_text_width(string.utf16_view(), *this, {});
}
NonnullRefPtr<Font> Font::scaled_with_size(float point_size) const
{
if (point_size == m_point_height && point_size == m_point_width)
return *const_cast<Font*>(this);
return m_typeface->font(point_size);
}
NonnullRefPtr<Font> Font::with_size(float point_size) const
{
return scaled_with_size(point_size);
}
float Font::pixel_size() const
{
return m_pixel_size;
}
float Font::point_size() const
{
return m_point_height;
}
Font::~Font()
{
if (m_harfbuzz_font)
hb_font_destroy(m_harfbuzz_font);
}
Font const& Font::bold_variant() const
{
if (m_bold_variant)
return *m_bold_variant;
m_bold_variant = Gfx::FontDatabase::the().get(family(), point_size(), 700, Gfx::FontWidth::Normal, 0);
if (!m_bold_variant)
m_bold_variant = this;
return *m_bold_variant;
}
hb_font_t* Font::harfbuzz_font() const
{
if (!m_harfbuzz_font) {
m_harfbuzz_font = hb_font_create(typeface().harfbuzz_typeface());
hb_font_set_scale(m_harfbuzz_font, pixel_size() * text_shaping_resolution, pixel_size() * text_shaping_resolution);
hb_font_set_ptem(m_harfbuzz_font, point_size());
auto variations = m_font_variation_settings.axes;
if (!variations.is_empty()) {
Vector<hb_variation_t> hb_list;
hb_list.ensure_capacity(variations.size());
for (auto const& axis : variations) {
hb_list.unchecked_append(hb_variation_t { axis.key.to_u32(), axis.value });
}
hb_font_set_variations(m_harfbuzz_font, hb_list.data(), hb_list.size());
}
}
return m_harfbuzz_font;
}
SkFont Font::skia_font(float scale) const
{
auto const& sk_typeface = as<TypefaceSkia>(*m_typeface).sk_typeface();
auto sk_font = SkFont { sk_ref_sp(sk_typeface), pixel_size() * scale };
sk_font.setSubpixel(true);
return sk_font;
}
Font::ShapingCache::~ShapingCache()
{
clear();
}
void Font::ShapingCache::clear()
{
for (auto& it : map) {
hb_buffer_destroy(it.value);
}
map.clear();
for (auto& buffer : single_ascii_character_map) {
if (buffer) {
hb_buffer_destroy(buffer);
buffer = nullptr;
}
}
}
static bool hb_face_has_table(hb_face_t* face, hb_tag_t tag)
{
hb_blob_t* blob = hb_face_reference_table(face, tag);
unsigned len = hb_blob_get_length(blob);
hb_blob_destroy(blob);
return len > 0;
}
bool Font::is_emoji_font() const
{
if (m_is_emoji_font == TriState::Unknown) {
// NOTE: This is a heuristic approach to determine if a font is an emoji font.
// AFAIK there is no definitive way to know this from the font data itself.
// 1. If the family name contains "emoji", it's probably an emoji font.
bool name_contains_emoji = family().bytes_as_string_view().contains("emoji"sv);
// 2. Check for color font tables and absence of regular text glyphs.
auto* hb_font = harfbuzz_font();
hb_face_t* face = hb_font_get_face(hb_font);
bool has_colr = hb_ot_color_has_layers(hb_font_get_face(hb_font));
bool has_svg = hb_ot_color_has_svg(hb_font_get_face(hb_font));
bool has_sbix = hb_face_has_table(face, HB_TAG('s', 'b', 'i', 'x'));
bool has_cbdt = hb_face_has_table(face, HB_TAG('C', 'B', 'D', 'T'));
bool has_cblc = hb_face_has_table(face, HB_TAG('C', 'B', 'L', 'C'));
bool has_any_color = has_colr || has_svg || has_sbix || (has_cbdt && has_cblc);
auto looks_like_text = [&]() {
hb_codepoint_t uppercase_a_glyph_id = 0;
hb_codepoint_t lowercase_a_glyph_id = 0;
bool has_uppercase_a = hb_font_get_nominal_glyph(hb_font, 'A', &uppercase_a_glyph_id);
bool has_lowercase_a = hb_font_get_nominal_glyph(hb_font, 'a', &lowercase_a_glyph_id);
return has_uppercase_a && has_lowercase_a;
}();
m_is_emoji_font = (name_contains_emoji && !looks_like_text) || (has_any_color && !looks_like_text) ? TriState::True : TriState::False;
return false;
}
return m_is_emoji_font == TriState::True;
}
}