mirror of
https://github.com/LadybirdBrowser/ladybird.git
synced 2025-10-19 15:43:20 +00:00
616 lines
21 KiB
C++
616 lines
21 KiB
C++
/*
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* Copyright (c) 2018-2021, Andreas Kling <andreas@ladybird.org>
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* Copyright (c) 2022, Tobias Christiansen <tobyase@serenityos.org>
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* Copyright (c) 2025, Jelle Raaijmakers <jelle@ladybird.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/CharacterTypes.h>
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#include <AK/StringBuilder.h>
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#include <LibUnicode/CharacterTypes.h>
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#include <LibUnicode/Locale.h>
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#include <LibWeb/DOM/Document.h>
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#include <LibWeb/Layout/InlineFormattingContext.h>
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#include <LibWeb/Layout/TextNode.h>
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#include <LibWeb/Painting/TextPaintable.h>
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namespace Web::Layout {
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GC_DEFINE_ALLOCATOR(TextNode);
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TextNode::TextNode(DOM::Document& document, DOM::Text& text)
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: Node(document, &text)
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{
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}
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TextNode::~TextNode() = default;
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// https://w3c.github.io/mathml-core/#new-text-transform-values
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static Utf16String apply_math_auto_text_transform(Utf16String const& string)
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{
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// https://w3c.github.io/mathml-core/#italic-mappings
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auto map_code_point_to_italic = [](u32 code_point) -> u32 {
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switch (code_point) {
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case 0x0041:
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return 0x1D434;
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case 0x0042:
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return 0x1D435;
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case 0x0043:
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return 0x1D436;
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case 0x0044:
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return 0x1D437;
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case 0x0045:
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return 0x1D438;
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case 0x0046:
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return 0x1D439;
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case 0x0047:
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return 0x1D43A;
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case 0x0048:
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return 0x1D43B;
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case 0x0049:
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return 0x1D43C;
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case 0x004A:
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return 0x1D43D;
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case 0x004B:
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return 0x1D43E;
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case 0x004C:
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return 0x1D43F;
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case 0x004D:
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return 0x1D440;
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case 0x004E:
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return 0x1D441;
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case 0x004F:
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return 0x1D442;
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case 0x0050:
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return 0x1D443;
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case 0x0051:
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return 0x1D444;
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case 0x0052:
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return 0x1D445;
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case 0x0053:
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return 0x1D446;
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case 0x0054:
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return 0x1D447;
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case 0x0055:
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return 0x1D448;
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case 0x0056:
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return 0x1D449;
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case 0x0057:
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return 0x1D44A;
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case 0x0058:
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return 0x1D44B;
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case 0x0059:
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return 0x1D44C;
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case 0x005A:
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return 0x1D44D;
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case 0x0061:
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return 0x1D44E;
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case 0x0062:
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return 0x1D44F;
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case 0x0063:
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return 0x1D450;
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case 0x0064:
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return 0x1D451;
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case 0x0065:
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return 0x1D452;
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case 0x0066:
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return 0x1D453;
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case 0x0067:
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return 0x1D454;
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case 0x0068:
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return 0x0210E;
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case 0x0069:
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return 0x1D456;
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case 0x006A:
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return 0x1D457;
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case 0x006B:
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return 0x1D458;
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case 0x006C:
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return 0x1D459;
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case 0x006D:
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return 0x1D45A;
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case 0x006E:
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return 0x1D45B;
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case 0x006F:
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return 0x1D45C;
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case 0x0070:
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return 0x1D45D;
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case 0x0071:
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return 0x1D45E;
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case 0x0072:
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return 0x1D45F;
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case 0x0073:
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return 0x1D460;
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case 0x0074:
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return 0x1D461;
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case 0x0075:
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return 0x1D462;
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case 0x0076:
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return 0x1D463;
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case 0x0077:
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return 0x1D464;
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case 0x0078:
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return 0x1D465;
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case 0x0079:
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return 0x1D466;
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case 0x007A:
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return 0x1D467;
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case 0x0131:
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return 0x1D6A4;
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case 0x0237:
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return 0x1D6A5;
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case 0x0391:
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return 0x1D6E2;
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case 0x0392:
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return 0x1D6E3;
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case 0x0393:
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return 0x1D6E4;
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case 0x0394:
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return 0x1D6E5;
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case 0x0395:
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return 0x1D6E6;
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case 0x0396:
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return 0x1D6E7;
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case 0x0397:
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return 0x1D6E8;
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case 0x0398:
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return 0x1D6E9;
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case 0x0399:
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return 0x1D6EA;
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case 0x039A:
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return 0x1D6EB;
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case 0x039B:
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return 0x1D6EC;
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case 0x039C:
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return 0x1D6ED;
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case 0x039D:
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return 0x1D6EE;
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case 0x039E:
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return 0x1D6EF;
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case 0x039F:
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return 0x1D6F0;
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case 0x03A0:
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return 0x1D6F1;
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case 0x03A1:
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return 0x1D6F2;
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case 0x03F4:
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return 0x1D6F3;
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case 0x03A3:
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return 0x1D6F4;
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case 0x03A4:
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return 0x1D6F5;
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case 0x03A5:
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return 0x1D6F6;
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case 0x03A6:
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return 0x1D6F7;
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case 0x03A7:
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return 0x1D6F8;
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case 0x03A8:
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return 0x1D6F9;
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case 0x03A9:
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return 0x1D6FA;
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case 0x2207:
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return 0x1D6FB;
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case 0x03B1:
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return 0x1D6FC;
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case 0x03B2:
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return 0x1D6FD;
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case 0x03B3:
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return 0x1D6FE;
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case 0x03B4:
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return 0x1D6FF;
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case 0x03B5:
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return 0x1D700;
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case 0x03B6:
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return 0x1D701;
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case 0x03B7:
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return 0x1D702;
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case 0x03B8:
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return 0x1D703;
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case 0x03B9:
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return 0x1D704;
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case 0x03BA:
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return 0x1D705;
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case 0x03BB:
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return 0x1D706;
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case 0x03BC:
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return 0x1D707;
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case 0x03BD:
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return 0x1D708;
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case 0x03BE:
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return 0x1D709;
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case 0x03BF:
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return 0x1D70A;
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case 0x03C0:
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return 0x1D70B;
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case 0x03C1:
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return 0x1D70C;
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case 0x03C2:
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return 0x1D70D;
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case 0x03C3:
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return 0x1D70E;
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case 0x03C4:
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return 0x1D70F;
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case 0x03C5:
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return 0x1D710;
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case 0x03C6:
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return 0x1D711;
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case 0x03C7:
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return 0x1D712;
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case 0x03C8:
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return 0x1D713;
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case 0x03C9:
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return 0x1D714;
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case 0x2202:
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return 0x1D715;
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case 0x03F5:
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return 0x1D716;
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case 0x03D1:
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return 0x1D717;
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case 0x03F0:
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return 0x1D718;
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case 0x03D5:
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return 0x1D719;
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case 0x03F1:
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return 0x1D71A;
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case 0x03D6:
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return 0x1D71B;
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default:
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return code_point;
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}
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};
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StringBuilder builder { StringBuilder::Mode::UTF16, string.length_in_code_units() };
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for (auto code_point : string)
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builder.append_code_point(map_code_point_to_italic(code_point));
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return builder.to_utf16_string();
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}
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static Utf16String apply_text_transform(Utf16String const& string, CSS::TextTransform text_transform, Optional<StringView> const& locale)
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{
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switch (text_transform) {
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case CSS::TextTransform::Uppercase:
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return string.to_uppercase(locale);
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case CSS::TextTransform::Lowercase:
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return string.to_lowercase(locale);
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case CSS::TextTransform::None:
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return string;
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case CSS::TextTransform::MathAuto:
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return apply_math_auto_text_transform(string);
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case CSS::TextTransform::Capitalize:
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return string.to_titlecase(locale, TrailingCodePointTransformation::PreserveExisting);
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case CSS::TextTransform::FullSizeKana:
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dbgln("FIXME: Implement text-transform full-size-kana");
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return string;
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case CSS::TextTransform::FullWidth:
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return string.to_fullwidth();
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}
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VERIFY_NOT_REACHED();
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}
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void TextNode::invalidate_text_for_rendering()
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{
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m_text_for_rendering = {};
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m_grapheme_segmenter.clear();
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}
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Utf16String const& TextNode::text_for_rendering() const
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{
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if (!m_text_for_rendering.has_value())
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const_cast<TextNode*>(this)->compute_text_for_rendering();
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return *m_text_for_rendering;
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}
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void TextNode::compute_text_for_rendering()
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{
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if (dom_node().is_password_input()) {
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m_text_for_rendering = Utf16String::repeated('*', dom_node().data().length_in_code_points());
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return;
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}
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// Apply text-transform
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// FIXME: This can generate more code points than there were before; we need to find a better way to map the
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// resulting paintable fragments' offsets into the original text node data.
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// See: https://github.com/LadybirdBrowser/ladybird/issues/6177
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auto parent_element = dom_node().parent_element();
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auto const maybe_lang = parent_element ? parent_element->lang() : Optional<String> {};
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auto const lang = maybe_lang.has_value() ? maybe_lang.value() : Optional<StringView> {};
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auto text = apply_text_transform(dom_node().data(), computed_values().text_transform(), lang);
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// The logic below deals with converting whitespace characters. If we don't have them, return early.
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if (text.is_empty() || !any_of(text, is_ascii_space)) {
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m_text_for_rendering = move(text);
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return;
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}
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// https://drafts.csswg.org/css-text-4/#white-space-phase-1
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bool convert_newlines = false;
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bool convert_tabs = false;
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// If white-space-collapse is set to collapse or preserve-breaks, white space characters are considered collapsible
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// and are processed by performing the following steps:
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auto white_space_collapse = computed_values().white_space_collapse();
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if (first_is_one_of(white_space_collapse, CSS::WhiteSpaceCollapse::Collapse, CSS::WhiteSpaceCollapse::PreserveBreaks)) {
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// 1. FIXME: Any sequence of collapsible spaces and tabs immediately preceding or following a segment break is removed.
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// 2. Collapsible segment breaks are transformed for rendering according to the segment break transformation
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// rules.
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{
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// https://drafts.csswg.org/css-text-4/#line-break-transform
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// FIXME: When white-space-collapse is not collapse, segment breaks are not collapsible. For values other than
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// collapse or preserve-spaces (which transforms them into spaces), segment breaks are instead transformed
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// into a preserved line feed (U+000A).
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// When white-space-collapse is collapse, segment breaks are collapsible, and are collapsed as follows:
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if (white_space_collapse == CSS::WhiteSpaceCollapse::Collapse) {
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// 1. FIXME: First, any collapsible segment break immediately following another collapsible segment break is
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// removed.
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// 2. FIXME: Then any remaining segment break is either transformed into a space (U+0020) or removed depending
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// on the context before and after the break. The rules for this operation are UA-defined in this
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// level.
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convert_newlines = true;
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}
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}
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// 3. Every collapsible tab is converted to a collapsible space (U+0020).
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convert_tabs = true;
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// 4. Any collapsible space immediately following another collapsible space—even one outside the boundary of the
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// inline containing that space, provided both spaces are within the same inline formatting context—is
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// collapsed to have zero advance width. (It is invisible, but retains its soft wrap opportunity, if any.)
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// AD-HOC: This is handled by TextNode::ChunkIterator by removing the space.
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}
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// If white-space-collapse is set to preserve-spaces, each tab and segment break is converted to a space.
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if (white_space_collapse == CSS::WhiteSpaceCollapse::PreserveSpaces) {
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convert_tabs = true;
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convert_newlines = true;
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}
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// AD-HOC: Prevent allocating a StringBuilder for a single space/newline/tab.
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if (text == " "sv || (convert_tabs && text == "\t"sv) || (convert_newlines && text == "\n"sv)) {
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m_text_for_rendering = " "_utf16;
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return;
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}
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// AD-HOC: It's important to not change the amount of code units in the resulting transformed text, so ChunkIterator
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// can pass views to this string with associated code unit offsets that still match the original text.
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if (convert_newlines || convert_tabs) {
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StringBuilder text_builder { StringBuilder::Mode::UTF16, text.length_in_code_units() };
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for (auto code_point : text) {
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if ((convert_newlines && code_point == '\n') || (convert_tabs && code_point == '\t'))
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code_point = ' ';
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text_builder.append_code_point(code_point);
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}
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text = text_builder.to_utf16_string();
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}
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m_text_for_rendering = move(text);
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}
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Unicode::Segmenter& TextNode::grapheme_segmenter() const
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{
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if (!m_grapheme_segmenter) {
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m_grapheme_segmenter = document().grapheme_segmenter().clone();
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m_grapheme_segmenter->set_segmented_text(text_for_rendering());
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}
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return *m_grapheme_segmenter;
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}
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TextNode::ChunkIterator::ChunkIterator(TextNode const& text_node, bool should_wrap_lines, bool should_respect_linebreaks)
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: ChunkIterator(text_node, text_node.text_for_rendering(), text_node.grapheme_segmenter(), should_wrap_lines, should_respect_linebreaks)
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{
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}
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TextNode::ChunkIterator::ChunkIterator(TextNode const& text_node, Utf16View const& text,
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Unicode::Segmenter& grapheme_segmenter, bool should_wrap_lines, bool should_respect_linebreaks)
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: m_should_wrap_lines(should_wrap_lines)
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, m_should_respect_linebreaks(should_respect_linebreaks)
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, m_view(text)
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, m_font_cascade_list(text_node.computed_values().font_list())
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, m_grapheme_segmenter(grapheme_segmenter)
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{
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m_should_collapse_whitespace = first_is_one_of(text_node.computed_values().white_space_collapse(), CSS::WhiteSpaceCollapse::Collapse, CSS::WhiteSpaceCollapse::PreserveBreaks);
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}
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static Gfx::GlyphRun::TextType text_type_for_code_point(u32 code_point)
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{
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switch (Unicode::bidirectional_class(code_point)) {
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case Unicode::BidiClass::WhiteSpaceNeutral:
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case Unicode::BidiClass::BlockSeparator:
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case Unicode::BidiClass::SegmentSeparator:
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case Unicode::BidiClass::CommonNumberSeparator:
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case Unicode::BidiClass::DirNonSpacingMark:
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case Unicode::BidiClass::ArabicNumber:
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case Unicode::BidiClass::EuropeanNumber:
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case Unicode::BidiClass::EuropeanNumberSeparator:
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case Unicode::BidiClass::EuropeanNumberTerminator:
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return Gfx::GlyphRun::TextType::ContextDependent;
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case Unicode::BidiClass::BoundaryNeutral:
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case Unicode::BidiClass::OtherNeutral:
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case Unicode::BidiClass::FirstStrongIsolate:
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case Unicode::BidiClass::PopDirectionalFormat:
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case Unicode::BidiClass::PopDirectionalIsolate:
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return Gfx::GlyphRun::TextType::Common;
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case Unicode::BidiClass::LeftToRight:
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case Unicode::BidiClass::LeftToRightEmbedding:
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case Unicode::BidiClass::LeftToRightIsolate:
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case Unicode::BidiClass::LeftToRightOverride:
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return Gfx::GlyphRun::TextType::Ltr;
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case Unicode::BidiClass::RightToLeft:
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case Unicode::BidiClass::RightToLeftArabic:
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case Unicode::BidiClass::RightToLeftEmbedding:
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case Unicode::BidiClass::RightToLeftIsolate:
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case Unicode::BidiClass::RightToLeftOverride:
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return Gfx::GlyphRun::TextType::Rtl;
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default:
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VERIFY_NOT_REACHED();
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}
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}
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Optional<TextNode::Chunk> TextNode::ChunkIterator::next()
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{
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if (!m_peek_queue.is_empty())
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return m_peek_queue.take_first();
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return next_without_peek();
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}
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Optional<TextNode::Chunk> TextNode::ChunkIterator::peek(size_t count)
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{
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while (m_peek_queue.size() <= count) {
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auto next = next_without_peek();
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if (!next.has_value())
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return {};
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m_peek_queue.append(*next);
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}
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return m_peek_queue[count];
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}
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TextNode::Chunk TextNode::ChunkIterator::create_empty_chunk()
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{
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return TextNode::Chunk {
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.view = {},
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.font = m_font_cascade_list.first(),
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.is_all_whitespace = true,
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.text_type = Gfx::GlyphRun::TextType::Common,
|
|
};
|
|
}
|
|
|
|
Optional<TextNode::Chunk> TextNode::ChunkIterator::next_without_peek()
|
|
{
|
|
if (m_current_index >= m_view.length_in_code_units())
|
|
return {};
|
|
|
|
auto current_code_point = [this] {
|
|
return m_view.code_point_at(m_current_index);
|
|
};
|
|
auto next_grapheme_boundary = [this] {
|
|
return m_grapheme_segmenter.next_boundary(m_current_index).value_or(m_view.length_in_code_units());
|
|
};
|
|
|
|
// https://drafts.csswg.org/css-text-4/#collapsible-white-space
|
|
auto is_collapsible = [this](u32 code_point) {
|
|
return m_should_collapse_whitespace && is_ascii_space(code_point);
|
|
};
|
|
|
|
auto code_point = current_code_point();
|
|
auto start_of_chunk = m_current_index;
|
|
|
|
auto const& font = m_font_cascade_list.font_for_code_point(code_point);
|
|
auto text_type = text_type_for_code_point(code_point);
|
|
|
|
auto broken_on_tab = false;
|
|
|
|
while (m_current_index < m_view.length_in_code_units()) {
|
|
code_point = current_code_point();
|
|
|
|
if (code_point == '\t') {
|
|
if (auto result = try_commit_chunk(start_of_chunk, m_current_index, false, broken_on_tab, font, text_type); result.has_value())
|
|
return result.release_value();
|
|
|
|
broken_on_tab = true;
|
|
// consume any consecutive tabs
|
|
while (m_current_index < m_view.length_in_code_units() && current_code_point() == '\t')
|
|
m_current_index = next_grapheme_boundary();
|
|
}
|
|
|
|
if (&font != &m_font_cascade_list.font_for_code_point(code_point)) {
|
|
if (auto result = try_commit_chunk(start_of_chunk, m_current_index, false, broken_on_tab, font, text_type); result.has_value())
|
|
return result.release_value();
|
|
}
|
|
|
|
if (m_should_respect_linebreaks && code_point == '\n') {
|
|
// Newline encountered, and we're supposed to preserve them.
|
|
// If we have accumulated some code points in the current chunk, commit them now and continue with the newline next time.
|
|
if (auto result = try_commit_chunk(start_of_chunk, m_current_index, false, broken_on_tab, font, text_type); result.has_value())
|
|
return result.release_value();
|
|
|
|
// Otherwise, commit the newline!
|
|
m_current_index = next_grapheme_boundary();
|
|
auto result = try_commit_chunk(start_of_chunk, m_current_index, true, broken_on_tab, font, text_type);
|
|
VERIFY(result.has_value());
|
|
return result.release_value();
|
|
}
|
|
|
|
// If both this code point and the previous code point are collapsible, skip code points until we're at a non-
|
|
// collapsible code point.
|
|
if (is_collapsible(code_point) && m_current_index > 0 && is_collapsible(m_view.code_point_at(m_current_index - 1))) {
|
|
auto result = try_commit_chunk(start_of_chunk, m_current_index, false, broken_on_tab, font, text_type);
|
|
|
|
while (m_current_index < m_view.length_in_code_units() && is_collapsible(current_code_point()))
|
|
m_current_index = next_grapheme_boundary();
|
|
|
|
if (result.has_value())
|
|
return result.release_value();
|
|
}
|
|
|
|
if (m_should_wrap_lines) {
|
|
if (text_type != text_type_for_code_point(code_point)) {
|
|
if (auto result = try_commit_chunk(start_of_chunk, m_current_index, false, broken_on_tab, font, text_type); result.has_value())
|
|
return result.release_value();
|
|
}
|
|
|
|
if (is_ascii_space(code_point)) {
|
|
// Whitespace encountered, and we're allowed to break on whitespace.
|
|
// If we have accumulated some code points in the current chunk, commit them now and continue with the whitespace next time.
|
|
if (auto result = try_commit_chunk(start_of_chunk, m_current_index, false, broken_on_tab, font, text_type); result.has_value())
|
|
return result.release_value();
|
|
|
|
// Otherwise, commit the whitespace!
|
|
m_current_index = next_grapheme_boundary();
|
|
if (auto result = try_commit_chunk(start_of_chunk, m_current_index, false, broken_on_tab, font, text_type); result.has_value())
|
|
return result.release_value();
|
|
continue;
|
|
}
|
|
}
|
|
|
|
m_current_index = next_grapheme_boundary();
|
|
}
|
|
|
|
if (start_of_chunk != m_view.length_in_code_units()) {
|
|
// Try to output whatever's left at the end of the text node.
|
|
if (auto result = try_commit_chunk(start_of_chunk, m_view.length_in_code_units(), false, broken_on_tab, font, text_type); result.has_value())
|
|
return result.release_value();
|
|
}
|
|
|
|
return {};
|
|
}
|
|
|
|
Optional<TextNode::Chunk> TextNode::ChunkIterator::try_commit_chunk(size_t start, size_t end, bool has_breaking_newline, bool has_breaking_tab, Gfx::Font const& font, Gfx::GlyphRun::TextType text_type) const
|
|
{
|
|
if (auto length_in_code_units = end - start; length_in_code_units > 0) {
|
|
auto chunk_view = m_view.substring_view(start, length_in_code_units);
|
|
return Chunk {
|
|
.view = chunk_view,
|
|
.font = font,
|
|
.start = start,
|
|
.length = length_in_code_units,
|
|
.has_breaking_newline = has_breaking_newline,
|
|
.has_breaking_tab = has_breaking_tab,
|
|
.is_all_whitespace = chunk_view.is_ascii_whitespace(),
|
|
.text_type = text_type,
|
|
};
|
|
}
|
|
|
|
return {};
|
|
}
|
|
|
|
GC::Ptr<Painting::Paintable> TextNode::create_paintable() const
|
|
{
|
|
return Painting::TextPaintable::create(*this);
|
|
}
|
|
|
|
}
|