ladybird/Tests/LibGfx/TestFontHandling.cpp
MacDue 50d33f79fa LibGfx: Allow extracting paths from fonts and add Gfx::Path::text()
This updates fonts so rather than rastering directly to a bitmap, you
can extract paths for glyphs. This is then used to implement a
Gfx::Path::text("some text", font) API, that if given a vector font
appends the path of the text to your Gfx::Path. This then allows
arbitrary manipulation of the text (rotation, skewing, etc), paving the
way for Word Art in Serenity.
2023-11-05 02:46:46 +01:00

196 lines
5.9 KiB
C++

/*
* Copyright (c) 2020, the SerenityOS developers.
* Copyright (c) 2021, Brian Gianforcaro <bgianf@serenityos.org>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#include <AK/Utf8View.h>
#include <LibCore/ResourceImplementationFile.h>
#include <LibGfx/Font/BitmapFont.h>
#include <LibGfx/Font/FontDatabase.h>
#include <LibGfx/Font/OpenType/Glyf.h>
#include <LibTest/TestCase.h>
#include <stdio.h>
#include <stdlib.h>
#include <unistd.h>
static void init_font_database()
{
#ifdef AK_OS_SERENITY
auto const test_file_root = "/usr/Tests/LibGfx/test-inputs/"_string;
#else
auto const test_file_root = "test-inputs/"_string;
#endif
Core::ResourceImplementation::install(make<Core::ResourceImplementationFile>(test_file_root));
Gfx::FontDatabase::the().load_all_fonts_from_uri("resource:///"sv);
}
TEST_CASE(test_fontdatabase_get_by_name)
{
init_font_database();
auto& font_database = Gfx::FontDatabase::the();
auto name = "Family 12 400 0"sv;
EXPECT(!font_database.get_by_name(name)->name().is_empty());
}
TEST_CASE(test_fontdatabase_get)
{
init_font_database();
auto& font_database = Gfx::FontDatabase::the();
EXPECT(!font_database.get("Family"_fly_string, 12, 400, Gfx::FontWidth::Normal, 0)->name().is_empty());
}
TEST_CASE(test_fontdatabase_for_each_font)
{
init_font_database();
auto& font_database = Gfx::FontDatabase::the();
font_database.for_each_font([&](Gfx::Font const& font) {
EXPECT(!font.name().is_empty());
EXPECT(!font.qualified_name().is_empty());
EXPECT(!font.family().is_empty());
EXPECT(font.glyph_count() > 0);
});
}
TEST_CASE(test_clone)
{
u8 glyph_height = 1;
u8 glyph_width = 1;
auto font = MUST(Gfx::BitmapFont::create(glyph_height, glyph_width, true, 256));
auto new_font = font->clone();
EXPECT(!new_font->name().is_empty());
EXPECT(!new_font->qualified_name().is_empty());
EXPECT(!new_font->family().is_empty());
EXPECT(new_font->glyph_count() > 0);
}
TEST_CASE(test_set_name)
{
u8 glyph_height = 1;
u8 glyph_width = 1;
auto font = MUST(Gfx::BitmapFont::create(glyph_height, glyph_width, true, 256));
auto name = "my newly created font"_string;
font->set_name(name);
EXPECT(!font->name().is_empty());
EXPECT(font->name().contains(name));
}
TEST_CASE(test_set_family)
{
u8 glyph_height = 1;
u8 glyph_width = 1;
auto font = MUST(Gfx::BitmapFont::create(glyph_height, glyph_width, true, 256));
auto family = "my newly created font family"_string;
font->set_family(family);
EXPECT(!font->family().is_empty());
EXPECT(font->family().contains(family));
}
TEST_CASE(test_set_glyph_width)
{
u8 glyph_height = 1;
u8 glyph_width = 1;
auto font = MUST(Gfx::BitmapFont::create(glyph_height, glyph_width, true, 256));
size_t ch = 123;
font->set_glyph_width(ch, glyph_width);
EXPECT(font->glyph_width(ch) == glyph_width);
}
TEST_CASE(test_set_glyph_spacing)
{
u8 glyph_height = 1;
u8 glyph_width = 1;
auto font = MUST(Gfx::BitmapFont::create(glyph_height, glyph_width, true, 256));
u8 glyph_spacing = 8;
font->set_glyph_spacing(glyph_spacing);
EXPECT(font->glyph_spacing() == glyph_spacing);
}
TEST_CASE(test_width)
{
u8 glyph_height = 1;
u8 glyph_width = 1;
auto font = MUST(Gfx::BitmapFont::create(glyph_height, glyph_width, true, 256));
EXPECT(font->width("A"sv) == glyph_width);
}
TEST_CASE(test_glyph_or_emoji_width)
{
u8 glyph_height = 1;
u8 glyph_width = 1;
auto font = MUST(Gfx::BitmapFont::create(glyph_height, glyph_width, true, 256));
Utf8View view { " "sv };
auto it = view.begin();
EXPECT(font->glyph_or_emoji_width(it));
}
TEST_CASE(test_load_from_uri)
{
init_font_database();
auto font = Gfx::BitmapFont::load_from_uri("resource://TestFont.font"sv);
EXPECT(!font->name().is_empty());
}
TEST_CASE(test_write_to_file)
{
u8 glyph_height = 1;
u8 glyph_width = 1;
auto font = MUST(Gfx::BitmapFont::create(glyph_height, glyph_width, true, 256));
char path[] = "/tmp/new.font.XXXXXX";
EXPECT(mkstemp(path) != -1);
TRY_OR_FAIL(font->write_to_file(path));
unlink(path);
}
TEST_CASE(test_character_set_masking)
{
init_font_database();
auto font = TRY_OR_FAIL(Gfx::BitmapFont::try_load_from_uri("resource://TestFont.font"sv));
auto unmasked_font = TRY_OR_FAIL(font->unmasked_character_set());
EXPECT(unmasked_font->glyph_index(0x0041).value() == 0x0041);
EXPECT(unmasked_font->glyph_index(0x0100).value() == 0x0100);
EXPECT(unmasked_font->glyph_index(0xFFFD).value() == 0xFFFD);
auto masked_font = TRY_OR_FAIL(unmasked_font->masked_character_set());
EXPECT(masked_font->glyph_index(0x0041).value() == 0x0041);
EXPECT(!masked_font->glyph_index(0x0100).has_value());
EXPECT(masked_font->glyph_index(0xFFFD).value() == 0x1FD);
}
TEST_CASE(resolve_glyph_path_containing_single_off_curve_point)
{
Vector<u8> glyph_data {
0, 5, 0, 205, 255, 51, 7, 51, 6, 225, 0, 3, 0, 6, 0, 9, 0, 12, 0, 15, 0, 31, 64, 13, 13, 2, 15, 5, 7, 2, 8, 5, 10, 3, 0,
5, 3, 0, 47, 47, 51, 17, 51, 17, 51, 17, 51, 17, 51, 17, 51, 48, 49, 19, 33, 17, 33, 1, 33, 1, 1, 17, 1, 1, 33, 9, 3,
205, 6, 102, 249, 154, 5, 184, 250, 248, 2, 133, 2, 199, 253, 125, 253, 57, 5, 4, 253, 127, 253, 53, 2, 133, 253,
123, 6, 225, 248, 82, 7, 68, 252, 231, 252, 145, 6, 50, 252, 231, 252, 149, 3, 23, 253, 57, 3, 27, 3, 29, 0, 1, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 6, 177, 2, 81, 43, 48, 49, 48, 0
};
OpenType::Glyf glyf(glyph_data.span());
auto glyph = glyf.glyph(118);
EXPECT(glyph.has_value());
EXPECT_NO_CRASH("resolving the path of glyph containing single off-curve point should not crash", [&] {
Gfx::Path path;
(void)glyph->append_path(path, 0, 0, 1, 1, [&](u16) -> Optional<OpenType::Glyf::Glyph> { VERIFY_NOT_REACHED(); });
return Test::Crash::Failure::DidNotCrash;
});
}