Quellcodebibliothek Statistik Leitseite products/Sources/formale Sprachen/C/LibreOffice/drawinglayer/source/tools/   (Office von Apache Version 25.8.3.2©)  Datei vom 5.10.2025 mit Größe 8 kB image not shown  

Quelle  emfpstringformat.cxx   Sprache: C

 
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
/*
 * This file is part of the LibreOffice project.
 *
 * This Source Code Form is subject to the terms of the Mozilla Public
 * License, v. 2.0. If a copy of the MPL was not distributed with this
 * file, You can obtain one at http://mozilla.org/MPL/2.0/.
 *
 * This file incorporates work covered by the following license notice:
 *
 *   Licensed to the Apache Software Foundation (ASF) under one or more
 *   contributor license agreements. See the NOTICE file distributed
 *   with this work for additional information regarding copyright
 *   ownership. The ASF licenses this file to you under the Apache
 *   License, Version 2.0 (the "License"); you may not use this file
 *   except in compliance with the License. You may obtain a copy of
 *   the License at http://www.apache.org/licenses/LICENSE-2.0 .
 */


#include <sal/log.hxx>
#include <rtl/ustrbuf.hxx>
#include "emfpstringformat.hxx"

namespace emfplushelper
{
    EMFPStringFormat::EMFPStringFormat()
        : header(0)
        , stringFormatFlags(0)
        , language(0)
        , stringAlignment(0)
        , lineAlign(0)
        , digitSubstitution(0)
        , digitLanguage(0)
        , firstTabOffset(0.0)
        , hotkeyPrefix(0)
        , leadingMargin(0.0)
        , trailingMargin(0.0)
        , tracking(1.0)
        , trimming(0)
        , tabStopCount(0)
        , rangeCount(0)
    {
    }

    static OUString StringFormatFlags(sal_uInt32 flag)
    {
        OUStringBuffer sFlags;

        // These are extracted from enum in emfpstringformat.hxx
        if (flag & StringFormatDirectionRightToLeft)
            sFlags.append("StringFormatDirectionRightToLeft ");

        if (flag & StringFormatDirectionVertical)
            sFlags.append("StringFormatDirectionVertical ");

        if (flag & StringFormatNoFitBlackBox)
            sFlags.append("StringFormatNoFitBlackBox ");

        if (flag & StringFormatDisplayFormatControl)
            sFlags.append("StringFormatDisplayFormatControl ");

        if (flag & StringFormatNoFontFallback)
            sFlags.append("StringFormatNoFontFallback ");

        if (flag & StringFormatMeasureTrailingSpaces)
            sFlags.append("StringFormatMeasureTrailingSpaces ");

        if (flag & StringFormatNoWrap)
            sFlags.append("StringFormatNoWrap ");

        if (flag & StringFormatLineLimit)
            sFlags.append("StringFormatLineLimit ");

        if (flag & StringFormatNoClip)
            sFlags.append("StringFormatNoClip ");

        if (flag & StringFormatBypassGDI)
            sFlags.append("StringFormatBypassGDI ");

        // There will be 1 extra space in the end. It could be truncated, but
        // as it is for SAL_INFO() only, it would not be important
        return sFlags.makeStringAndClear();
    }

    static OUString StringAlignmentString(sal_uInt32 nAlignment)
    {
        switch(nAlignment)
        {
            case StringAlignment::StringAlignmentNear:
                return u"StringAlignmentNear"_ustr;
            case StringAlignment::StringAlignmentCenter:
                return u"StringAlignmentCenter"_ustr;
            case StringAlignment::StringAlignmentFar:
                return u"StringAlignmentFar"_ustr;
            default:
                assert(false && nAlignment && "invalid string alignment value");
                return u"INVALID"_ustr;
        }
    }

    static OUString DigitSubstitutionString(sal_uInt32 nSubst)
    {
        switch(nSubst)
        {
            case StringDigitSubstitution::StringDigitSubstitutionUser:
                return u"StringDigitSubstitutionUser"_ustr;
            case StringDigitSubstitution::StringDigitSubstitutionNone:
                return u"StringDigitSubstitutionNone"_ustr;
            case StringDigitSubstitution::StringDigitSubstitutionNational:
                return u"StringDigitSubstitutionNational"_ustr;
            case StringDigitSubstitution::StringDigitSubstitutionTraditional:
                return u"StringDigitSubstitutionTraditional"_ustr;
            default:
                assert(false && nSubst && "invalid string digit substitution value");
                return u"INVALID"_ustr;
        }
    }

    static OUString HotkeyPrefixString(sal_uInt32 nHotkey)
    {
        switch(nHotkey)
        {
            case HotkeyPrefix::HotkeyPrefixNone:
                return u"HotkeyPrefixNone"_ustr;
            case HotkeyPrefix::HotkeyPrefixShow:
                return u"HotkeyPrefixShow"_ustr;
            case HotkeyPrefix::HotkeyPrefixHide:
                return u"HotkeyPrefixHide"_ustr;
            default:
                assert(false && nHotkey && "invalid hotkey prefix value");
                return u"INVALID"_ustr;
        }
    }

    static OUString StringTrimmingString(sal_uInt32 nTrimming)
    {
        switch(nTrimming)
        {
            case StringTrimming::StringTrimmingNone:
                return u"StringTrimmingNone"_ustr;
            case StringTrimming::StringTrimmingCharacter:
                return u"StringTrimmingCharacter"_ustr;
            case StringTrimming::StringTrimmingWord:
                return u"StringTrimmingWord"_ustr;
            case StringTrimming::StringTrimmingEllipsisCharacter:
                return u"StringTrimmingEllipsisCharacter"_ustr;
            case StringTrimming::StringTrimmingEllipsisWord:
                return u"StringTrimmingEllipsisWord"_ustr;
            case StringTrimming::StringTrimmingEllipsisPath:
                return u"StringTrimmingEllipsisPath"_ustr;
            default:
                assert(false && nTrimming && "invalid trim value");
                return u"INVALID"_ustr;
        }
    }

    void EMFPStringFormat::Read(SvMemoryStream &s)
    {
        s.ReadUInt32(header).ReadUInt32(stringFormatFlags).ReadUInt32(language);
        s.ReadUInt32(stringAlignment).ReadUInt32(lineAlign).ReadUInt32(digitSubstitution).ReadUInt32(digitLanguage);
        s.ReadFloat(firstTabOffset).ReadInt32(hotkeyPrefix).ReadFloat(leadingMargin).ReadFloat(trailingMargin).ReadFloat(tracking);
        s.ReadInt32(trimming).ReadInt32(tabStopCount).ReadInt32(rangeCount);
        // keep only the last 16 bits of language
        language >>= 16;
        digitLanguage >>= 16;
        SAL_WARN_IF((header >> 12) != 0xdbc01, "drawinglayer.emf""Invalid header - not 0xdbc01");
        SAL_INFO("drawinglayer.emf""EMF+\tString format");
        SAL_INFO("drawinglayer.emf""EMF+\t\tHeader: 0x" << std::hex << (header >> 12));
        SAL_INFO("drawinglayer.emf""EMF+\t\tVersion: 0x" << (header & 0x1fff) << std::dec);
        SAL_INFO("drawinglayer.emf""EMF+\t\tStringFormatFlags: " << StringFormatFlags(stringFormatFlags));
        SAL_INFO("drawinglayer.emf""EMF+\t\tLanguage: sublangid: 0x" << std::hex << (language >> 10) << ", primarylangid: 0x" << (language & 0xF800));
        SAL_INFO("drawinglayer.emf""EMF+\t\tLineAlign: " << StringAlignmentString(lineAlign));
        SAL_INFO("drawinglayer.emf""EMF+\t\tDigitSubstitution: " << DigitSubstitutionString(digitSubstitution));
        SAL_INFO("drawinglayer.emf""EMF+\t\tDigitLanguage: sublangid: 0x" << std::hex << (digitLanguage >> 10) << ", primarylangid: 0x" << (digitLanguage & 0xF800));
        SAL_INFO("drawinglayer.emf""EMF+\t\tFirstTabOffset: " << firstTabOffset);
        SAL_INFO("drawinglayer.emf""EMF+\t\tHotkeyPrefix: " << HotkeyPrefixString(hotkeyPrefix));
        SAL_INFO("drawinglayer.emf""EMF+\t\tLeadingMargin: " << leadingMargin);
        SAL_INFO("drawinglayer.emf""EMF+\t\tTrailingMargin: " << trailingMargin);
        SAL_INFO("drawinglayer.emf""EMF+\t\tTracking: " << tracking);
        SAL_INFO("drawinglayer.emf""EMF+\t\tTrimming: " << StringTrimmingString(trimming));
        SAL_INFO("drawinglayer.emf""EMF+\t\tTabStopCount: " << tabStopCount);
        SAL_INFO("drawinglayer.emf""EMF+\t\tRangeCount: " << rangeCount);

        SAL_WARN_IF(digitSubstitution != StringDigitSubstitution::StringDigitSubstitutionNone,
                    "drawinglayer.emf""EMF+\t TODO EMFPStringFormat:digitSubstitution");
        SAL_WARN_IF(firstTabOffset != 0.0, "drawinglayer.emf""EMF+\t TODO EMFPStringFormat:firstTabOffset");
        SAL_WARN_IF(hotkeyPrefix != HotkeyPrefix::HotkeyPrefixNone, "drawinglayer.emf""EMF+\t TODO EMFPStringFormat:hotkeyPrefix");
        SAL_WARN_IF(tracking != 1.0, "drawinglayer.emf""EMF+\t TODO EMFPStringFormat:tracking");
        SAL_WARN_IF(trimming != StringTrimming::StringTrimmingNone, "drawinglayer.emf""EMF+\t TODO EMFPStringFormat:trimming");
        SAL_WARN_IF(tabStopCount, "drawinglayer.emf""EMF+\t TODO EMFPStringFormat:tabStopCount");
        SAL_WARN_IF(rangeCount != 0, "drawinglayer.emf""EMF+\t TODO EMFPStringFormat:StringFormatData");
    }
}

/* vim:set shiftwidth=4 softtabstop=4 expandtab: */

Messung V0.5
C=95 H=91 G=92

¤ Dauer der Verarbeitung: 0.4 Sekunden  ¤

*© Formatika GbR, Deutschland






Wurzel

Suchen

Beweissystem der NASA

Beweissystem Isabelle

NIST Cobol Testsuite

Cephes Mathematical Library

Wiener Entwicklungsmethode

Haftungshinweis

Die Informationen auf dieser Webseite wurden nach bestem Wissen sorgfältig zusammengestellt. Es wird jedoch weder Vollständigkeit, noch Richtigkeit, noch Qualität der bereit gestellten Informationen zugesichert.

Bemerkung:

Die farbliche Syntaxdarstellung und die Messung sind noch experimentell.