376 lines
13 KiB
C++
376 lines
13 KiB
C++
/*
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* Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include "BitmapFont.h"
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#include "Emoji.h"
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#include <AK/Utf32View.h>
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#include <AK/Utf8View.h>
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#include <LibCore/FileStream.h>
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#include <LibGfx/FontDatabase.h>
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#include <LibGfx/FontStyleMapping.h>
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namespace Gfx {
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struct [[gnu::packed]] FontFileHeader {
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char magic[4];
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u8 glyph_width;
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u8 glyph_height;
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u16 range_mask_size;
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u8 is_variable_width;
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u8 glyph_spacing;
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u8 baseline;
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u8 mean_line;
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u8 presentation_size;
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u16 weight;
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u8 slope;
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char name[32];
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char family[32];
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};
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static_assert(AssertSize<FontFileHeader, 80>());
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static constexpr size_t s_max_glyph_count = 0x110000;
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static constexpr size_t s_max_range_mask_size = s_max_glyph_count / (256 * 8);
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NonnullRefPtr<Font> BitmapFont::clone() const
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{
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auto* new_range_mask = static_cast<u8*>(malloc(m_range_mask_size));
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memcpy(new_range_mask, m_range_mask, m_range_mask_size);
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size_t bytes_per_glyph = sizeof(u32) * glyph_height();
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auto* new_rows = static_cast<u32*>(kmalloc_array(m_glyph_count, bytes_per_glyph));
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memcpy(new_rows, m_rows, bytes_per_glyph * m_glyph_count);
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auto* new_widths = static_cast<u8*>(malloc(m_glyph_count));
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memcpy(new_widths, m_glyph_widths, m_glyph_count);
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return adopt_ref(*new BitmapFont(m_name, m_family, new_rows, new_widths, m_fixed_width, m_glyph_width, m_glyph_height, m_glyph_spacing, m_range_mask_size, new_range_mask, m_baseline, m_mean_line, m_presentation_size, m_weight, m_slope, true));
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}
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NonnullRefPtr<BitmapFont> BitmapFont::create(u8 glyph_height, u8 glyph_width, bool fixed, size_t glyph_count)
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{
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glyph_count += 256 - (glyph_count % 256);
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glyph_count = min(glyph_count, s_max_glyph_count);
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size_t glyphs_per_range = 8 * 256;
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u16 range_mask_size = ceil_div(glyph_count, glyphs_per_range);
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auto* new_range_mask = static_cast<u8*>(calloc(range_mask_size, 1));
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for (size_t i = 0; i < glyph_count; i += 256) {
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new_range_mask[i / 256 / 8] |= 1 << (i / 256 % 8);
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}
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size_t bytes_per_glyph = sizeof(u32) * glyph_height;
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auto* new_rows = static_cast<u32*>(calloc(glyph_count, bytes_per_glyph));
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auto* new_widths = static_cast<u8*>(calloc(glyph_count, 1));
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return adopt_ref(*new BitmapFont("Untitled", "Untitled", new_rows, new_widths, fixed, glyph_width, glyph_height, 1, range_mask_size, new_range_mask, 0, 0, 0, 400, 0, true));
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}
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NonnullRefPtr<BitmapFont> BitmapFont::unmasked_character_set() const
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{
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auto* new_range_mask = static_cast<u8*>(malloc(s_max_range_mask_size));
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constexpr u8 max_bits { 0b1111'1111 };
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memset(new_range_mask, max_bits, s_max_range_mask_size);
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size_t bytes_per_glyph = sizeof(u32) * glyph_height();
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auto* new_rows = static_cast<u32*>(kmalloc_array(s_max_glyph_count, bytes_per_glyph));
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auto* new_widths = static_cast<u8*>(calloc(s_max_glyph_count, 1));
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for (size_t code_point = 0; code_point < s_max_glyph_count; ++code_point) {
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auto index = glyph_index(code_point);
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if (index.has_value()) {
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memcpy(&new_widths[code_point], &m_glyph_widths[index.value()], 1);
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memcpy(&new_rows[code_point * glyph_height()], &m_rows[index.value() * glyph_height()], bytes_per_glyph);
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}
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}
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return adopt_ref(*new BitmapFont(m_name, m_family, new_rows, new_widths, m_fixed_width, m_glyph_width, m_glyph_height, m_glyph_spacing, s_max_range_mask_size, new_range_mask, m_baseline, m_mean_line, m_presentation_size, m_weight, m_slope, true));
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}
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NonnullRefPtr<BitmapFont> BitmapFont::masked_character_set() const
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{
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auto* new_range_mask = static_cast<u8*>(calloc(s_max_range_mask_size, 1));
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u16 new_range_mask_size { 0 };
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for (size_t i = 0; i < s_max_glyph_count; ++i) {
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if (m_glyph_widths[i] > 0) {
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new_range_mask[i / 256 / 8] |= 1 << (i / 256 % 8);
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if (i / 256 / 8 + 1 > new_range_mask_size)
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new_range_mask_size = i / 256 / 8 + 1;
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}
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}
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size_t new_glyph_count { 0 };
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for (size_t i = 0; i < new_range_mask_size; ++i) {
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new_glyph_count += 256 * __builtin_popcount(new_range_mask[i]);
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}
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size_t bytes_per_glyph = sizeof(u32) * m_glyph_height;
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auto* new_rows = static_cast<u32*>(calloc(new_glyph_count, bytes_per_glyph));
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auto* new_widths = static_cast<u8*>(calloc(new_glyph_count, 1));
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for (size_t i = 0, j = 0; i < s_max_glyph_count; ++i) {
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if (!(new_range_mask[i / 256 / 8] & 1 << (i / 256 % 8))) {
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j++;
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i += 255;
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continue;
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}
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memcpy(&new_widths[i - j * 256], &m_glyph_widths[i], 1);
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memcpy(&new_rows[(i - j * 256) * glyph_height()], &m_rows[i * glyph_height()], bytes_per_glyph);
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}
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return adopt_ref(*new BitmapFont(m_name, m_family, new_rows, new_widths, m_fixed_width, m_glyph_width, m_glyph_height, m_glyph_spacing, new_range_mask_size, new_range_mask, m_baseline, m_mean_line, m_presentation_size, m_weight, m_slope, true));
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}
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BitmapFont::BitmapFont(String name, String family, u32* rows, u8* widths, bool is_fixed_width, u8 glyph_width, u8 glyph_height, u8 glyph_spacing, u16 range_mask_size, u8* range_mask, u8 baseline, u8 mean_line, u8 presentation_size, u16 weight, u8 slope, bool owns_arrays)
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: m_name(name)
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, m_family(family)
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, m_range_mask_size(range_mask_size)
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, m_range_mask(range_mask)
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, m_rows(rows)
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, m_glyph_widths(widths)
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, m_glyph_width(glyph_width)
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, m_glyph_height(glyph_height)
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, m_min_glyph_width(glyph_width)
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, m_max_glyph_width(glyph_width)
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, m_glyph_spacing(glyph_spacing)
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, m_baseline(baseline)
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, m_mean_line(mean_line)
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, m_presentation_size(presentation_size)
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, m_weight(weight)
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, m_slope(slope)
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, m_fixed_width(is_fixed_width)
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, m_owns_arrays(owns_arrays)
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{
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VERIFY(m_range_mask);
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VERIFY(m_rows);
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VERIFY(m_glyph_widths);
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update_x_height();
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for (size_t i = 0, index = 0; i < m_range_mask_size; ++i) {
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for (size_t j = 0; j < 8; ++j) {
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if (m_range_mask[i] & (1 << j)) {
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m_glyph_count += 256;
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m_range_indices.append(index++);
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} else {
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m_range_indices.append({});
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}
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}
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}
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if (!m_fixed_width) {
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u8 maximum = 0;
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u8 minimum = 255;
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for (size_t i = 0; i < m_glyph_count; ++i) {
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minimum = min(minimum, m_glyph_widths[i]);
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maximum = max(maximum, m_glyph_widths[i]);
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}
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m_min_glyph_width = minimum;
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m_max_glyph_width = max(maximum, m_glyph_width);
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}
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}
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BitmapFont::~BitmapFont()
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{
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if (m_owns_arrays) {
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free(m_glyph_widths);
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free(m_rows);
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free(m_range_mask);
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}
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}
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RefPtr<BitmapFont> BitmapFont::load_from_memory(const u8* data)
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{
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auto& header = *reinterpret_cast<const FontFileHeader*>(data);
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if (memcmp(header.magic, "!Fnt", 4)) {
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dbgln("header.magic != '!Fnt', instead it's '{:c}{:c}{:c}{:c}'", header.magic[0], header.magic[1], header.magic[2], header.magic[3]);
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return nullptr;
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}
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if (header.name[sizeof(header.name) - 1] != '\0') {
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dbgln("Font name not fully null-terminated");
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return nullptr;
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}
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if (header.family[sizeof(header.family) - 1] != '\0') {
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dbgln("Font family not fully null-terminated");
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return nullptr;
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}
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size_t bytes_per_glyph = sizeof(u32) * header.glyph_height;
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size_t glyph_count { 0 };
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u8* range_mask = const_cast<u8*>(data + sizeof(FontFileHeader));
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for (size_t i = 0; i < header.range_mask_size; ++i)
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glyph_count += 256 * __builtin_popcount(range_mask[i]);
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u32* rows = (u32*)(range_mask + header.range_mask_size);
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u8* widths = (u8*)(rows) + glyph_count * bytes_per_glyph;
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return adopt_ref(*new BitmapFont(String(header.name), String(header.family), rows, widths, !header.is_variable_width, header.glyph_width, header.glyph_height, header.glyph_spacing, header.range_mask_size, range_mask, header.baseline, header.mean_line, header.presentation_size, header.weight, header.slope));
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}
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RefPtr<BitmapFont> BitmapFont::load_from_file(String const& path)
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{
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if (Core::File::is_device(path))
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return nullptr;
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auto file_or_error = MappedFile::map(path);
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if (file_or_error.is_error())
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return nullptr;
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auto font = load_from_memory((const u8*)file_or_error.value()->data());
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if (!font)
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return nullptr;
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font->m_mapped_file = file_or_error.release_value();
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return font;
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}
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bool BitmapFont::write_to_file(String const& path)
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{
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FontFileHeader header;
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memset(&header, 0, sizeof(FontFileHeader));
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memcpy(header.magic, "!Fnt", 4);
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header.glyph_width = m_glyph_width;
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header.glyph_height = m_glyph_height;
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header.range_mask_size = m_range_mask_size;
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header.baseline = m_baseline;
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header.mean_line = m_mean_line;
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header.is_variable_width = !m_fixed_width;
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header.glyph_spacing = m_glyph_spacing;
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header.presentation_size = m_presentation_size;
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header.weight = m_weight;
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header.slope = m_slope;
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memcpy(header.name, m_name.characters(), min(m_name.length(), sizeof(header.name) - 1));
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memcpy(header.family, m_family.characters(), min(m_family.length(), sizeof(header.family) - 1));
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auto stream_result = Core::OutputFileStream::open_buffered(path);
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if (stream_result.is_error())
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return false;
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auto& stream = stream_result.value();
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size_t bytes_per_glyph = sizeof(u32) * m_glyph_height;
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stream << ReadonlyBytes { &header, sizeof(header) };
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stream << ReadonlyBytes { m_range_mask, m_range_mask_size };
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stream << ReadonlyBytes { m_rows, m_glyph_count * bytes_per_glyph };
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stream << ReadonlyBytes { m_glyph_widths, m_glyph_count };
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stream.flush();
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if (stream.handle_any_error())
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return false;
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return true;
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}
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Glyph BitmapFont::glyph(u32 code_point) const
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{
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// Note: Until all fonts support the 0xFFFD replacement
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// character, fall back to painting '?' if necessary.
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auto index = glyph_index(code_point).value_or('?');
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auto width = m_glyph_widths[index];
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return Glyph(
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GlyphBitmap(&m_rows[index * m_glyph_height], { width, m_glyph_height }),
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0,
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width,
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m_glyph_height);
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}
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Glyph BitmapFont::raw_glyph(u32 code_point) const
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{
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auto width = m_glyph_widths[code_point];
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return Glyph(
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GlyphBitmap(&m_rows[code_point * m_glyph_height], { width, m_glyph_height }),
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0,
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width,
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m_glyph_height);
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}
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Optional<size_t> BitmapFont::glyph_index(u32 code_point) const
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{
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auto index = code_point / 256;
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if (index >= m_range_indices.size())
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return {};
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if (!m_range_indices[index].has_value())
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return {};
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return m_range_indices[index].value() * 256 + code_point % 256;
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}
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bool BitmapFont::contains_glyph(u32 code_point) const
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{
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auto index = glyph_index(code_point);
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return index.has_value() && m_glyph_widths[index.value()] > 0;
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}
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u8 BitmapFont::glyph_width(u32 code_point) const
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{
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if (is_ascii(code_point) && !is_ascii_printable(code_point))
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return 0;
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auto index = glyph_index(code_point);
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return m_fixed_width || !index.has_value() ? m_glyph_width : m_glyph_widths[index.value()];
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}
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int BitmapFont::glyph_or_emoji_width_for_variable_width_font(u32 code_point) const
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{
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// FIXME: This is a hack in lieu of proper code point identification.
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// 0xFFFF is arbitrary but also the end of the Basic Multilingual Plane.
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if (code_point < 0xFFFF) {
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auto index = glyph_index(code_point);
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if (!index.has_value())
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return glyph_width(0xFFFD);
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if (m_glyph_widths[index.value()] > 0)
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return glyph_width(code_point);
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return glyph_width(0xFFFD);
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}
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auto* emoji = Emoji::emoji_for_code_point(code_point);
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if (emoji == nullptr)
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return glyph_width(0xFFFD);
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return emoji->size().width();
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}
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int BitmapFont::width(StringView const& view) const { return unicode_view_width(Utf8View(view)); }
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int BitmapFont::width(Utf8View const& view) const { return unicode_view_width(view); }
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int BitmapFont::width(Utf32View const& view) const { return unicode_view_width(view); }
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template<typename T>
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ALWAYS_INLINE int BitmapFont::unicode_view_width(T const& view) const
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{
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if (view.is_empty())
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return 0;
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bool first = true;
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int width = 0;
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int longest_width = 0;
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for (u32 code_point : view) {
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if (code_point == '\n' || code_point == '\r') {
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first = true;
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longest_width = max(width, longest_width);
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width = 0;
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continue;
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}
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if (!first)
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width += glyph_spacing();
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first = false;
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width += glyph_or_emoji_width(code_point);
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}
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longest_width = max(width, longest_width);
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return longest_width;
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}
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String BitmapFont::qualified_name() const
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{
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return String::formatted("{} {} {}", family(), presentation_size(), weight());
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}
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String BitmapFont::variant() const
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{
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StringBuilder builder;
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builder.append(weight_to_name(weight()));
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if (slope()) {
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if (builder.string_view() == "Regular"sv)
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builder.clear();
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else
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builder.append(" ");
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builder.append(slope_to_name(slope()));
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}
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return builder.to_string();
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}
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Font const& Font::bold_variant() const
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{
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if (m_bold_variant)
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return *m_bold_variant;
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m_bold_variant = Gfx::FontDatabase::the().get(family(), presentation_size(), 700);
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if (!m_bold_variant)
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m_bold_variant = this;
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return *m_bold_variant;
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}
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}
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