forked from mirrors/gecko-dev
Anonymous text node in password field has `NS_MAYBE_MASKED` flag and `TextEditor` managing the node has range of unmasking. This patch makes `BuildTextRunsScanner::BuildTextRunForFrames()` treat text frame in password field as `text-transform` applied. For recording the unmask range, this patch creates `nsTransformedCharStyle::mMaskPassword` and treats unmask range start/end edges as different style boundary. Therefore, `nsCaseTransformTextRunFactory::TransformString()` can replace each character with a password mask character with the information. Note that we need to kill bidi algorithm in password fields with forms.css because caret position will tell everybody whether the typing character is an RTL or an LTR character. Differential Revision: https://phabricator.services.mozilla.com/D38009 --HG-- extra : moz-landing-system : lando
237 lines
10 KiB
C++
237 lines
10 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#ifndef NSTEXTRUNTRANSFORMATIONS_H_
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#define NSTEXTRUNTRANSFORMATIONS_H_
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#include "mozilla/Attributes.h"
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#include "mozilla/MemoryReporting.h"
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#include "mozilla/UniquePtr.h"
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#include "gfxTextRun.h"
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#include "mozilla/ComputedStyle.h"
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#include "nsPresContext.h"
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#include "nsStyleStruct.h"
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class nsTransformedTextRun;
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struct nsTransformedCharStyle final {
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NS_INLINE_DECL_REFCOUNTING(nsTransformedCharStyle)
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explicit nsTransformedCharStyle(mozilla::ComputedStyle* aStyle,
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nsPresContext* aPresContext)
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: mFont(aStyle->StyleFont()->mFont),
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mLanguage(aStyle->StyleFont()->mLanguage),
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mPresContext(aPresContext),
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mScriptSizeMultiplier(aStyle->StyleFont()->mScriptSizeMultiplier),
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mTextTransform(aStyle->StyleText()->mTextTransform),
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mMathVariant(aStyle->StyleFont()->mMathVariant),
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mExplicitLanguage(aStyle->StyleFont()->mExplicitLanguage) {}
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nsFont mFont;
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RefPtr<nsAtom> mLanguage;
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RefPtr<nsPresContext> mPresContext;
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float mScriptSizeMultiplier;
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mozilla::StyleTextTransform mTextTransform;
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uint8_t mMathVariant;
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bool mExplicitLanguage;
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bool mForceNonFullWidth = false;
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bool mMaskPassword = false;
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private:
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~nsTransformedCharStyle() {}
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nsTransformedCharStyle(const nsTransformedCharStyle& aOther) = delete;
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nsTransformedCharStyle& operator=(const nsTransformedCharStyle& aOther) =
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delete;
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};
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class nsTransformingTextRunFactory {
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public:
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virtual ~nsTransformingTextRunFactory() {}
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// Default 8-bit path just transforms to Unicode and takes that path
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already_AddRefed<nsTransformedTextRun> MakeTextRun(
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const uint8_t* aString, uint32_t aLength,
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const gfxFontGroup::Parameters* aParams, gfxFontGroup* aFontGroup,
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mozilla::gfx::ShapedTextFlags aFlags, nsTextFrameUtils::Flags aFlags2,
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nsTArray<RefPtr<nsTransformedCharStyle>>&& aStyles, bool aOwnsFactory);
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already_AddRefed<nsTransformedTextRun> MakeTextRun(
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const char16_t* aString, uint32_t aLength,
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const gfxFontGroup::Parameters* aParams, gfxFontGroup* aFontGroup,
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mozilla::gfx::ShapedTextFlags aFlags, nsTextFrameUtils::Flags aFlags2,
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nsTArray<RefPtr<nsTransformedCharStyle>>&& aStyles, bool aOwnsFactory);
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virtual void RebuildTextRun(nsTransformedTextRun* aTextRun,
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mozilla::gfx::DrawTarget* aRefDrawTarget,
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gfxMissingFontRecorder* aMFR) = 0;
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};
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/**
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* Builds textruns that transform the text in some way (e.g., capitalize)
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* and then render the text using some other textrun implementation.
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*/
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class nsCaseTransformTextRunFactory : public nsTransformingTextRunFactory {
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public:
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// We could add an optimization here so that when there is no inner
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// factory, no title-case conversion, and no upper-casing of SZLIG, we
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// override MakeTextRun (after making it virtual in the superclass) and have
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// it just convert the string to uppercase or lowercase and create the textrun
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// via the fontgroup.
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// Takes ownership of aInnerTransformTextRunFactory
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explicit nsCaseTransformTextRunFactory(
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mozilla::UniquePtr<nsTransformingTextRunFactory>
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aInnerTransformingTextRunFactory,
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bool aAllUppercase = false)
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: mInnerTransformingTextRunFactory(
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std::move(aInnerTransformingTextRunFactory)),
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mAllUppercase(aAllUppercase) {}
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virtual void RebuildTextRun(nsTransformedTextRun* aTextRun,
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mozilla::gfx::DrawTarget* aRefDrawTarget,
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gfxMissingFontRecorder* aMFR) override;
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// Perform a transformation on the given string, writing the result into
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// aConvertedString. If aAllUppercase is true, the transform is (global)
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// upper-casing, and aLanguage is used to determine any language-specific
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// behavior; otherwise, an nsTransformedTextRun should be passed in
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// as aTextRun and its styles will be used to determine the transform(s)
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// to be applied.
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// If such an input textrun is provided, then its line-breaks and styles
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// will be copied to the output arrays, which must also be provided by
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// the caller. For the global upper-casing usage (no input textrun),
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// these are ignored.
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// If aCaseTransformsOnly is true, then only the upper/lower/capitalize
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// transformations are performed; full-width and full-size-kana are ignored.
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// If `aTextRun` is not nullptr and characters which are styled with setting
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// `nsTransformedCharStyle::mMaskPassword` to true, they are replaced with
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// password mask characters and are not transformed (i.e., won't be added
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// or merged for the specified transform). However, unmasked characters
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// whose `nsTransformedCharStyle::mMaskPassword` is set to false are
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// transformed normally.
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static bool TransformString(
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const nsAString& aString, nsString& aConvertedString, bool aAllUppercase,
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bool aCaseTransformsOnly, const nsAtom* aLanguage,
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nsTArray<bool>& aCharsToMergeArray, nsTArray<bool>& aDeletedCharsArray,
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const nsTransformedTextRun* aTextRun = nullptr,
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uint32_t aOffsetInTextRun = 0,
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nsTArray<uint8_t>* aCanBreakBeforeArray = nullptr,
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nsTArray<RefPtr<nsTransformedCharStyle>>* aStyleArray = nullptr);
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protected:
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mozilla::UniquePtr<nsTransformingTextRunFactory>
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mInnerTransformingTextRunFactory;
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bool mAllUppercase;
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};
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/**
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* So that we can reshape as necessary, we store enough information
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* to fully rebuild the textrun contents.
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*/
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class nsTransformedTextRun final : public gfxTextRun {
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public:
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static already_AddRefed<nsTransformedTextRun> Create(
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const gfxTextRunFactory::Parameters* aParams,
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nsTransformingTextRunFactory* aFactory, gfxFontGroup* aFontGroup,
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const char16_t* aString, uint32_t aLength,
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const mozilla::gfx::ShapedTextFlags aFlags,
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const nsTextFrameUtils::Flags aFlags2,
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nsTArray<RefPtr<nsTransformedCharStyle>>&& aStyles, bool aOwnsFactory);
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~nsTransformedTextRun() {
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if (mOwnsFactory) {
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delete mFactory;
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}
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}
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void SetCapitalization(uint32_t aStart, uint32_t aLength,
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bool* aCapitalization);
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virtual bool SetPotentialLineBreaks(Range aRange,
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const uint8_t* aBreakBefore) override;
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/**
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* Called after SetCapitalization and SetPotentialLineBreaks
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* are done and before we request any data from the textrun. Also always
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* called after a Create.
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*/
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void FinishSettingProperties(mozilla::gfx::DrawTarget* aRefDrawTarget,
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gfxMissingFontRecorder* aMFR) {
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if (mNeedsRebuild) {
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mNeedsRebuild = false;
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mFactory->RebuildTextRun(this, aRefDrawTarget, aMFR);
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}
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}
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// override the gfxTextRun impls to account for additional members here
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virtual size_t SizeOfExcludingThis(
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mozilla::MallocSizeOf aMallocSizeOf) override;
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virtual size_t SizeOfIncludingThis(
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mozilla::MallocSizeOf aMallocSizeOf) override;
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nsTransformingTextRunFactory* mFactory;
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nsTArray<RefPtr<nsTransformedCharStyle>> mStyles;
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nsTArray<bool> mCapitalize;
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nsString mString;
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bool mOwnsFactory;
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bool mNeedsRebuild;
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private:
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nsTransformedTextRun(const gfxTextRunFactory::Parameters* aParams,
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nsTransformingTextRunFactory* aFactory,
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gfxFontGroup* aFontGroup, const char16_t* aString,
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uint32_t aLength,
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const mozilla::gfx::ShapedTextFlags aFlags,
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const nsTextFrameUtils::Flags aFlags2,
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nsTArray<RefPtr<nsTransformedCharStyle>>&& aStyles,
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bool aOwnsFactory)
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: gfxTextRun(aParams, aLength, aFontGroup, aFlags, aFlags2),
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mFactory(aFactory),
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mStyles(aStyles),
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mString(aString, aLength),
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mOwnsFactory(aOwnsFactory),
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mNeedsRebuild(true) {
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mCharacterGlyphs = reinterpret_cast<CompressedGlyph*>(this + 1);
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}
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};
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/**
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* Copy a given textrun, but merge certain characters into a single logical
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* character. Glyphs for a character are added to the glyph list for the
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* previous character and then the merged character is eliminated. Visually the
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* results are identical.
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*
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* This is used for text-transform:uppercase when we encounter a SZLIG,
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* whose uppercase form is "SS", or other ligature or precomposed form
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* that expands to multiple codepoints during case transformation,
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* and for Greek text when combining diacritics have been deleted.
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*
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* This function is unable to merge characters when they occur in different
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* glyph runs. This only happens in tricky edge cases where a character was
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* decomposed by case-mapping (e.g. there's no precomposed uppercase version
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* of an accented lowercase letter), and then font-matching caused the
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* diacritics to be assigned to a different font than the base character.
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* In this situation, the diacritic(s) get discarded, which is less than
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* ideal, but they probably weren't going to render very well anyway.
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* Bug 543200 will improve this by making font-matching operate on entire
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* clusters instead of individual codepoints.
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*
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* For simplicity, this produces a textrun containing all DetailedGlyphs,
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* no simple glyphs. So don't call it unless you really have merging to do.
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*
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* @param aCharsToMerge when aCharsToMerge[i] is true, this character in aSrc
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* is merged into the previous character
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*
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* @param aDeletedChars when aDeletedChars[i] is true, the character at this
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* position in aDest was deleted (has no corresponding char in aSrc)
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*/
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void MergeCharactersInTextRun(gfxTextRun* aDest, gfxTextRun* aSrc,
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const bool* aCharsToMerge,
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const bool* aDeletedChars);
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gfxTextRunFactory::Parameters GetParametersForInner(
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nsTransformedTextRun* aTextRun, mozilla::gfx::ShapedTextFlags* aFlags,
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mozilla::gfx::DrawTarget* aRefDrawTarget);
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#endif /*NSTEXTRUNTRANSFORMATIONS_H_*/
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