| 1 | /**************************************************************************** | 
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| 2 | ** | 
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| 3 | ** Copyright (C) 2011 Nokia Corporation and/or its subsidiary(-ies). | 
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| 4 | ** All rights reserved. | 
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| 5 | ** Contact: Nokia Corporation (qt-info@nokia.com) | 
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| 6 | ** | 
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| 7 | ** This file is part of the QtOpenGL module of the Qt Toolkit. | 
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| 8 | ** | 
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| 9 | ** $QT_BEGIN_LICENSE:LGPL$ | 
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| 10 | ** Commercial Usage | 
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| 11 | ** Licensees holding valid Qt Commercial licenses may use this file in | 
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| 12 | ** accordance with the Qt Commercial License Agreement provided with the | 
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| 13 | ** Software or, alternatively, in accordance with the terms contained in | 
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| 14 | ** a written agreement between you and Nokia. | 
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| 15 | ** | 
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| 16 | ** GNU Lesser General Public License Usage | 
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| 17 | ** Alternatively, this file may be used under the terms of the GNU Lesser | 
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| 18 | ** General Public License version 2.1 as published by the Free Software | 
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| 19 | ** Foundation and appearing in the file LICENSE.LGPL included in the | 
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| 20 | ** packaging of this file.  Please review the following information to | 
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| 21 | ** ensure the GNU Lesser General Public License version 2.1 requirements | 
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| 22 | ** will be met: http://www.gnu.org/licenses/old-licenses/lgpl-2.1.html. | 
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| 23 | ** | 
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| 24 | ** In addition, as a special exception, Nokia gives you certain additional | 
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| 25 | ** rights.  These rights are described in the Nokia Qt LGPL Exception | 
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| 26 | ** version 1.1, included in the file LGPL_EXCEPTION.txt in this package. | 
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| 27 | ** | 
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| 28 | ** GNU General Public License Usage | 
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| 29 | ** Alternatively, this file may be used under the terms of the GNU | 
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| 30 | ** General Public License version 3.0 as published by the Free Software | 
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| 31 | ** Foundation and appearing in the file LICENSE.GPL included in the | 
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| 32 | ** packaging of this file.  Please review the following information to | 
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| 33 | ** ensure the GNU General Public License version 3.0 requirements will be | 
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| 34 | ** met: http://www.gnu.org/copyleft/gpl.html. | 
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| 35 | ** | 
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| 36 | ** If you have questions regarding the use of this file, please contact | 
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| 37 | ** Nokia at qt-info@nokia.com. | 
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| 38 | ** $QT_END_LICENSE$ | 
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| 39 | ** | 
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| 40 | ****************************************************************************/ | 
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| 41 |  | 
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| 42 | #include "qtriangulatingstroker_p.h" | 
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| 43 | #include <qmath.h> | 
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| 44 |  | 
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| 45 | QT_BEGIN_NAMESPACE | 
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| 46 |  | 
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| 47 | #define CURVE_FLATNESS Q_PI / 8 | 
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| 48 |  | 
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| 49 |  | 
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| 50 |  | 
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| 51 |  | 
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| 52 | void QTriangulatingStroker::endCapOrJoinClosed(const qreal *start, const qreal *cur, | 
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| 53 | bool implicitClose, bool endsAtStart) | 
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| 54 | { | 
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| 55 | if (endsAtStart) { | 
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| 56 | join(start + 2); | 
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| 57 | } else if (implicitClose) { | 
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| 58 | join(start); | 
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| 59 | lineTo(start); | 
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| 60 | join(start+2); | 
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| 61 | } else { | 
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| 62 | endCap(cur); | 
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| 63 | } | 
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| 64 | int count = m_vertices.size(); | 
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| 65 |  | 
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| 66 | // Copy the (x, y) values because QDataBuffer::add(const float& t) | 
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| 67 | // may resize the buffer, which will leave t pointing at the | 
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| 68 | // previous buffer's memory region if we don't copy first. | 
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| 69 | float x = m_vertices.at(count-2); | 
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| 70 | float y = m_vertices.at(count-1); | 
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| 71 | m_vertices.add(x); | 
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| 72 | m_vertices.add(y); | 
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| 73 | } | 
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| 74 |  | 
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| 75 |  | 
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| 76 | void QTriangulatingStroker::process(const QVectorPath &path, const QPen &pen, const QRectF &) | 
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| 77 | { | 
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| 78 | const qreal *pts = path.points(); | 
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| 79 | const QPainterPath::ElementType *types = path.elements(); | 
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| 80 | int count = path.elementCount(); | 
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| 81 | if (count < 2) | 
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| 82 | return; | 
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| 83 |  | 
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| 84 | float realWidth = qpen_widthf(pen); | 
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| 85 | if (realWidth == 0) | 
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| 86 | realWidth = 1; | 
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| 87 |  | 
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| 88 | m_width = realWidth / 2; | 
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| 89 |  | 
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| 90 | bool cosmetic = pen.isCosmetic(); | 
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| 91 | if (cosmetic) { | 
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| 92 | m_width = m_width * m_inv_scale; | 
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| 93 | } | 
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| 94 |  | 
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| 95 | m_join_style = qpen_joinStyle(pen); | 
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| 96 | m_cap_style = qpen_capStyle(pen); | 
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| 97 | m_vertices.reset(); | 
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| 98 | m_miter_limit = pen.miterLimit() * qpen_widthf(pen); | 
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| 99 |  | 
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| 100 | // The curvyness is based on the notion that I originally wanted | 
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| 101 | // roughly one line segment pr 4 pixels. This may seem little, but | 
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| 102 | // because we sample at constantly incrementing B(t) E [0<t<1], we | 
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| 103 | // will get longer segments where the curvature is small and smaller | 
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| 104 | // segments when the curvature is high. | 
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| 105 | // | 
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| 106 | // To get a rough idea of the length of each curve, I pretend that | 
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| 107 | // the curve is a 90 degree arc, whose radius is | 
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| 108 | // qMax(curveBounds.width, curveBounds.height). Based on this | 
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| 109 | // logic we can estimate the length of the outline edges based on | 
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| 110 | // the radius + a pen width and adjusting for scale factors | 
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| 111 | // depending on if the pen is cosmetic or not. | 
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| 112 | // | 
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| 113 | // The curvyness value of PI/14 was based on, | 
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| 114 | // arcLength = 2*PI*r/4 = PI*r/2 and splitting length into somewhere | 
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| 115 | // between 3 and 8 where 5 seemed to be give pretty good results | 
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| 116 | // hence: Q_PI/14. Lower divisors will give more detail at the | 
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| 117 | // direct cost of performance. | 
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| 118 |  | 
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| 119 | // simplfy pens that are thin in device size (2px wide or less) | 
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| 120 | if (realWidth < 2.5 && (cosmetic || m_inv_scale == 1)) { | 
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| 121 | if (m_cap_style == Qt::RoundCap) | 
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| 122 | m_cap_style = Qt::SquareCap; | 
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| 123 | if (m_join_style == Qt::RoundJoin) | 
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| 124 | m_join_style = Qt::MiterJoin; | 
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| 125 | m_curvyness_add = 0.5; | 
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| 126 | m_curvyness_mul = CURVE_FLATNESS / m_inv_scale; | 
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| 127 | m_roundness = 1; | 
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| 128 | } else if (cosmetic) { | 
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| 129 | m_curvyness_add = realWidth / 2; | 
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| 130 | m_curvyness_mul = CURVE_FLATNESS; | 
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| 131 | m_roundness = qMax<int>(4, realWidth * CURVE_FLATNESS); | 
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| 132 | } else { | 
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| 133 | m_curvyness_add = m_width; | 
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| 134 | m_curvyness_mul = CURVE_FLATNESS / m_inv_scale; | 
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| 135 | m_roundness = qMax<int>(4, realWidth * m_curvyness_mul); | 
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| 136 | } | 
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| 137 |  | 
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| 138 | // Over this level of segmentation, there doesn't seem to be any | 
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| 139 | // benefit, even for huge penWidth | 
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| 140 | if (m_roundness > 24) | 
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| 141 | m_roundness = 24; | 
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| 142 |  | 
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| 143 | m_sin_theta = qFastSin(Q_PI / m_roundness); | 
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| 144 | m_cos_theta = qFastCos(Q_PI / m_roundness); | 
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| 145 |  | 
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| 146 | const qreal *endPts = pts + (count<<1); | 
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| 147 | const qreal *startPts = 0; | 
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| 148 |  | 
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| 149 | Qt::PenCapStyle cap = m_cap_style; | 
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| 150 |  | 
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| 151 | if (!types) { | 
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| 152 | // skip duplicate points | 
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| 153 | while((pts + 2) < endPts && pts[0] == pts[2] && pts[1] == pts[3]) | 
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| 154 | pts += 2; | 
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| 155 | if ((pts + 2) == endPts) | 
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| 156 | return; | 
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| 157 |  | 
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| 158 | startPts = pts; | 
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| 159 |  | 
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| 160 | bool endsAtStart = startPts[0] == *(endPts-2) && startPts[1] == *(endPts-1); | 
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| 161 |  | 
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| 162 | if (endsAtStart || path.hasImplicitClose()) | 
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| 163 | m_cap_style = Qt::FlatCap; | 
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| 164 | moveTo(pts); | 
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| 165 | m_cap_style = cap; | 
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| 166 | pts += 2; | 
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| 167 | lineTo(pts); | 
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| 168 | pts += 2; | 
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| 169 | while (pts < endPts) { | 
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| 170 | if (m_cx != pts[0] || m_cy != pts[1]) { | 
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| 171 | join(pts); | 
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| 172 | lineTo(pts); | 
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| 173 | } | 
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| 174 | pts += 2; | 
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| 175 | } | 
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| 176 |  | 
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| 177 | endCapOrJoinClosed(startPts, pts-2, path.hasImplicitClose(), endsAtStart); | 
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| 178 |  | 
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| 179 | } else { | 
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| 180 | bool endsAtStart = false; | 
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| 181 | while (pts < endPts) { | 
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| 182 | switch (*types) { | 
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| 183 | case QPainterPath::MoveToElement: { | 
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| 184 | if (pts != path.points()) | 
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| 185 | endCapOrJoinClosed(startPts, pts-2, path.hasImplicitClose(), endsAtStart); | 
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| 186 |  | 
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| 187 | startPts = pts; | 
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| 188 | int end = (endPts - pts) / 2; | 
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| 189 | int i = 2; // Start looking to ahead since we never have two moveto's in a row | 
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| 190 | while (i<end && types[i] != QPainterPath::MoveToElement) { | 
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| 191 | ++i; | 
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| 192 | } | 
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| 193 | endsAtStart = startPts[0] == pts[i*2 - 2] && startPts[1] == pts[i*2 - 1]; | 
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| 194 | if (endsAtStart || path.hasImplicitClose()) | 
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| 195 | m_cap_style = Qt::FlatCap; | 
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| 196 |  | 
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| 197 | moveTo(pts); | 
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| 198 | m_cap_style = cap; | 
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| 199 | pts+=2; | 
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| 200 | ++types; | 
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| 201 | break; } | 
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| 202 | case QPainterPath::LineToElement: | 
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| 203 | if (*(types - 1) != QPainterPath::MoveToElement) | 
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| 204 | join(pts); | 
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| 205 | lineTo(pts); | 
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| 206 | pts+=2; | 
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| 207 | ++types; | 
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| 208 | break; | 
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| 209 | case QPainterPath::CurveToElement: | 
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| 210 | if (*(types - 1) != QPainterPath::MoveToElement) | 
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| 211 | join(pts); | 
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| 212 | cubicTo(pts); | 
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| 213 | pts+=6; | 
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| 214 | types+=3; | 
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| 215 | break; | 
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| 216 | default: | 
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| 217 | Q_ASSERT(false); | 
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| 218 | break; | 
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| 219 | } | 
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| 220 | } | 
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| 221 |  | 
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| 222 | endCapOrJoinClosed(startPts, pts-2, path.hasImplicitClose(), endsAtStart); | 
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| 223 | } | 
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| 224 | } | 
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| 225 |  | 
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| 226 | void QTriangulatingStroker::moveTo(const qreal *pts) | 
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| 227 | { | 
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| 228 | m_cx = pts[0]; | 
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| 229 | m_cy = pts[1]; | 
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| 230 |  | 
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| 231 | float x2 = pts[2]; | 
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| 232 | float y2 = pts[3]; | 
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| 233 | normalVector(m_cx, m_cy, x2, y2, &m_nvx, &m_nvy); | 
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| 234 |  | 
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| 235 |  | 
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| 236 | // To acheive jumps we insert zero-area tringles. This is done by | 
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| 237 | // adding two identical points in both the end of previous strip | 
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| 238 | // and beginning of next strip | 
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| 239 | bool invisibleJump = m_vertices.size(); | 
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| 240 |  | 
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| 241 | switch (m_cap_style) { | 
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| 242 | case Qt::FlatCap: | 
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| 243 | if (invisibleJump) { | 
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| 244 | m_vertices.add(m_cx + m_nvx); | 
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| 245 | m_vertices.add(m_cy + m_nvy); | 
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| 246 | } | 
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| 247 | break; | 
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| 248 | case Qt::SquareCap: { | 
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| 249 | float sx = m_cx - m_nvy; | 
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| 250 | float sy = m_cy + m_nvx; | 
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| 251 | if (invisibleJump) { | 
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| 252 | m_vertices.add(sx + m_nvx); | 
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| 253 | m_vertices.add(sy + m_nvy); | 
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| 254 | } | 
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| 255 | emitLineSegment(sx, sy, m_nvx, m_nvy); | 
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| 256 | break; } | 
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| 257 | case Qt::RoundCap: { | 
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| 258 | QVarLengthArray<float> points; | 
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| 259 | arcPoints(m_cx, m_cy, m_cx + m_nvx, m_cy + m_nvy, m_cx - m_nvx, m_cy - m_nvy, points); | 
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| 260 | m_vertices.resize(m_vertices.size() + points.size() + 2 * int(invisibleJump)); | 
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| 261 | int count = m_vertices.size(); | 
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| 262 | int front = 0; | 
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| 263 | int end = points.size() / 2; | 
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| 264 | while (front != end) { | 
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| 265 | m_vertices.at(--count) = points[2 * end - 1]; | 
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| 266 | m_vertices.at(--count) = points[2 * end - 2]; | 
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| 267 | --end; | 
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| 268 | if (front == end) | 
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| 269 | break; | 
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| 270 | m_vertices.at(--count) = points[2 * front + 1]; | 
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| 271 | m_vertices.at(--count) = points[2 * front + 0]; | 
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| 272 | ++front; | 
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| 273 | } | 
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| 274 |  | 
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| 275 | if (invisibleJump) { | 
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| 276 | m_vertices.at(count - 1) = m_vertices.at(count + 1); | 
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| 277 | m_vertices.at(count - 2) = m_vertices.at(count + 0); | 
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| 278 | } | 
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| 279 | break; } | 
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| 280 | default: break; // ssssh gcc... | 
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| 281 | } | 
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| 282 | emitLineSegment(m_cx, m_cy, m_nvx, m_nvy); | 
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| 283 | } | 
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| 284 |  | 
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| 285 | void QTriangulatingStroker::cubicTo(const qreal *pts) | 
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| 286 | { | 
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| 287 | const QPointF *p = (const QPointF *) pts; | 
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| 288 | QBezier bezier = QBezier::fromPoints(*(p - 1), p[0], p[1], p[2]); | 
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| 289 |  | 
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| 290 | QRectF bounds = bezier.bounds(); | 
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| 291 | float rad = qMax(bounds.width(), bounds.height()); | 
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| 292 | int threshold = qMin<float>(64, (rad + m_curvyness_add) * m_curvyness_mul); | 
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| 293 | if (threshold < 4) | 
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| 294 | threshold = 4; | 
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| 295 | qreal threshold_minus_1 = threshold - 1; | 
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| 296 | float vx, vy; | 
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| 297 |  | 
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| 298 | float cx = m_cx, cy = m_cy; | 
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| 299 | float x, y; | 
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| 300 |  | 
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| 301 | for (int i=1; i<threshold; ++i) { | 
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| 302 | qreal t = qreal(i) / threshold_minus_1; | 
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| 303 | QPointF p = bezier.pointAt(t); | 
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| 304 | x = p.x(); | 
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| 305 | y = p.y(); | 
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| 306 |  | 
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| 307 | normalVector(cx, cy, x, y, &vx, &vy); | 
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| 308 |  | 
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| 309 | emitLineSegment(x, y, vx, vy); | 
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| 310 |  | 
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| 311 | cx = x; | 
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| 312 | cy = y; | 
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| 313 | } | 
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| 314 |  | 
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| 315 | m_cx = cx; | 
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| 316 | m_cy = cy; | 
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| 317 |  | 
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| 318 | m_nvx = vx; | 
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| 319 | m_nvy = vy; | 
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| 320 | } | 
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| 321 |  | 
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| 322 | void QTriangulatingStroker::join(const qreal *pts) | 
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| 323 | { | 
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| 324 | // Creates a join to the next segment (m_cx, m_cy) -> (pts[0], pts[1]) | 
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| 325 | normalVector(m_cx, m_cy, pts[0], pts[1], &m_nvx, &m_nvy); | 
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| 326 |  | 
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| 327 | switch (m_join_style) { | 
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| 328 | case Qt::BevelJoin: | 
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| 329 | break; | 
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| 330 | case Qt::SvgMiterJoin: | 
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| 331 | case Qt::MiterJoin: { | 
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| 332 | // Find out on which side the join should be. | 
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| 333 | int count = m_vertices.size(); | 
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| 334 | float prevNvx = m_vertices.at(count - 2) - m_cx; | 
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| 335 | float prevNvy = m_vertices.at(count - 1) - m_cy; | 
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| 336 | float xprod = prevNvx * m_nvy - prevNvy * m_nvx; | 
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| 337 | float px, py, qx, qy; | 
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| 338 |  | 
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| 339 | // If the segments are parallel, use bevel join. | 
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| 340 | if (qFuzzyIsNull(xprod)) | 
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| 341 | break; | 
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| 342 |  | 
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| 343 | // Find the corners of the previous and next segment to join. | 
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| 344 | if (xprod < 0) { | 
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| 345 | px = m_vertices.at(count - 2); | 
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| 346 | py = m_vertices.at(count - 1); | 
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| 347 | qx = m_cx - m_nvx; | 
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| 348 | qy = m_cy - m_nvy; | 
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| 349 | } else { | 
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| 350 | px = m_vertices.at(count - 4); | 
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| 351 | py = m_vertices.at(count - 3); | 
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| 352 | qx = m_cx + m_nvx; | 
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| 353 | qy = m_cy + m_nvy; | 
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| 354 | } | 
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| 355 |  | 
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| 356 | // Find intersection point. | 
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| 357 | float pu = px * prevNvx + py * prevNvy; | 
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| 358 | float qv = qx * m_nvx + qy * m_nvy; | 
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| 359 | float ix = (m_nvy * pu - prevNvy * qv) / xprod; | 
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| 360 | float iy = (prevNvx * qv - m_nvx * pu) / xprod; | 
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| 361 |  | 
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| 362 | // Check that the distance to the intersection point is less than the miter limit. | 
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| 363 | if ((ix - px) * (ix - px) + (iy - py) * (iy - py) <= m_miter_limit * m_miter_limit) { | 
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| 364 | m_vertices.add(ix); | 
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| 365 | m_vertices.add(iy); | 
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| 366 | m_vertices.add(ix); | 
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| 367 | m_vertices.add(iy); | 
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| 368 | } | 
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| 369 | // else | 
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| 370 | // Do a plain bevel join if the miter limit is exceeded or if | 
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| 371 | // the lines are parallel. This is not what the raster | 
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| 372 | // engine's stroker does, but it is both faster and similar to | 
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| 373 | // what some other graphics API's do. | 
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| 374 |  | 
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| 375 | break; } | 
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| 376 | case Qt::RoundJoin: { | 
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| 377 | QVarLengthArray<float> points; | 
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| 378 | int count = m_vertices.size(); | 
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| 379 | float prevNvx = m_vertices.at(count - 2) - m_cx; | 
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| 380 | float prevNvy = m_vertices.at(count - 1) - m_cy; | 
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| 381 | if (m_nvx * prevNvy - m_nvy * prevNvx < 0) { | 
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| 382 | arcPoints(0, 0, m_nvx, m_nvy, -prevNvx, -prevNvy, points); | 
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| 383 | for (int i = points.size() / 2; i > 0; --i) | 
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| 384 | emitLineSegment(m_cx, m_cy, points[2 * i - 2], points[2 * i - 1]); | 
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| 385 | } else { | 
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| 386 | arcPoints(0, 0, -prevNvx, -prevNvy, m_nvx, m_nvy, points); | 
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| 387 | for (int i = 0; i < points.size() / 2; ++i) | 
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| 388 | emitLineSegment(m_cx, m_cy, points[2 * i + 0], points[2 * i + 1]); | 
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| 389 | } | 
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| 390 | break; } | 
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| 391 | default: break; // gcc warn-- | 
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| 392 | } | 
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| 393 |  | 
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| 394 | emitLineSegment(m_cx, m_cy, m_nvx, m_nvy); | 
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| 395 | } | 
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| 396 |  | 
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| 397 | void QTriangulatingStroker::endCap(const qreal *) | 
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| 398 | { | 
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| 399 | switch (m_cap_style) { | 
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| 400 | case Qt::FlatCap: | 
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| 401 | break; | 
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| 402 | case Qt::SquareCap: | 
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| 403 | emitLineSegment(m_cx + m_nvy, m_cy - m_nvx, m_nvx, m_nvy); | 
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| 404 | break; | 
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| 405 | case Qt::RoundCap: { | 
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| 406 | QVarLengthArray<float> points; | 
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| 407 | int count = m_vertices.size(); | 
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| 408 | arcPoints(m_cx, m_cy, m_vertices.at(count - 2), m_vertices.at(count - 1), m_vertices.at(count - 4), m_vertices.at(count - 3), points); | 
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| 409 | int front = 0; | 
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| 410 | int end = points.size() / 2; | 
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| 411 | while (front != end) { | 
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| 412 | m_vertices.add(points[2 * end - 2]); | 
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| 413 | m_vertices.add(points[2 * end - 1]); | 
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| 414 | --end; | 
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| 415 | if (front == end) | 
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| 416 | break; | 
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| 417 | m_vertices.add(points[2 * front + 0]); | 
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| 418 | m_vertices.add(points[2 * front + 1]); | 
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| 419 | ++front; | 
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| 420 | } | 
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| 421 | break; } | 
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| 422 | default: break; // to shut gcc up... | 
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| 423 | } | 
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| 424 | } | 
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| 425 |  | 
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| 426 | void QTriangulatingStroker::arcPoints(float cx, float cy, float fromX, float fromY, float toX, float toY, QVarLengthArray<float> &points) | 
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| 427 | { | 
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| 428 | float dx1 = fromX - cx; | 
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| 429 | float dy1 = fromY - cy; | 
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| 430 | float dx2 = toX - cx; | 
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| 431 | float dy2 = toY - cy; | 
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| 432 |  | 
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| 433 | // while more than 180 degrees left: | 
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| 434 | while (dx1 * dy2 - dx2 * dy1 < 0) { | 
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| 435 | float tmpx = dx1 * m_cos_theta - dy1 * m_sin_theta; | 
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| 436 | float tmpy = dx1 * m_sin_theta + dy1 * m_cos_theta; | 
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| 437 | dx1 = tmpx; | 
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| 438 | dy1 = tmpy; | 
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| 439 | points.append(cx + dx1); | 
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| 440 | points.append(cy + dy1); | 
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| 441 | } | 
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| 442 |  | 
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| 443 | // while more than 90 degrees left: | 
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| 444 | while (dx1 * dx2 + dy1 * dy2 < 0) { | 
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| 445 | float tmpx = dx1 * m_cos_theta - dy1 * m_sin_theta; | 
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| 446 | float tmpy = dx1 * m_sin_theta + dy1 * m_cos_theta; | 
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| 447 | dx1 = tmpx; | 
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| 448 | dy1 = tmpy; | 
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| 449 | points.append(cx + dx1); | 
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| 450 | points.append(cy + dy1); | 
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| 451 | } | 
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| 452 |  | 
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| 453 | // while more than 0 degrees left: | 
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| 454 | while (dx1 * dy2 - dx2 * dy1 > 0) { | 
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| 455 | float tmpx = dx1 * m_cos_theta - dy1 * m_sin_theta; | 
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| 456 | float tmpy = dx1 * m_sin_theta + dy1 * m_cos_theta; | 
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| 457 | dx1 = tmpx; | 
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| 458 | dy1 = tmpy; | 
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| 459 | points.append(cx + dx1); | 
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| 460 | points.append(cy + dy1); | 
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| 461 | } | 
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| 462 |  | 
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| 463 | // remove last point which was rotated beyond [toX, toY]. | 
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| 464 | if (!points.isEmpty()) | 
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| 465 | points.resize(points.size() - 2); | 
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| 466 | } | 
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| 467 |  | 
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| 468 | static void qdashprocessor_moveTo(qreal x, qreal y, void *data) | 
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| 469 | { | 
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| 470 | ((QDashedStrokeProcessor *) data)->addElement(QPainterPath::MoveToElement, x, y); | 
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| 471 | } | 
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| 472 |  | 
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| 473 | static void qdashprocessor_lineTo(qreal x, qreal y, void *data) | 
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| 474 | { | 
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| 475 | ((QDashedStrokeProcessor *) data)->addElement(QPainterPath::LineToElement, x, y); | 
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| 476 | } | 
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| 477 |  | 
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| 478 | static void qdashprocessor_cubicTo(qreal, qreal, qreal, qreal, qreal, qreal, void *) | 
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| 479 | { | 
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| 480 | Q_ASSERT(0); // The dasher should not produce curves... | 
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| 481 | } | 
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| 482 |  | 
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| 483 | QDashedStrokeProcessor::QDashedStrokeProcessor() | 
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| 484 | : m_points(0), m_types(0), | 
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| 485 | m_dash_stroker(0), m_inv_scale(1) | 
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| 486 | { | 
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| 487 | m_dash_stroker.setMoveToHook(qdashprocessor_moveTo); | 
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| 488 | m_dash_stroker.setLineToHook(qdashprocessor_lineTo); | 
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| 489 | m_dash_stroker.setCubicToHook(qdashprocessor_cubicTo); | 
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| 490 | } | 
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| 491 |  | 
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| 492 | void QDashedStrokeProcessor::process(const QVectorPath &path, const QPen &pen, const QRectF &clip) | 
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| 493 | { | 
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| 494 |  | 
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| 495 | const qreal *pts = path.points(); | 
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| 496 | const QPainterPath::ElementType *types = path.elements(); | 
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| 497 | int count = path.elementCount(); | 
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| 498 |  | 
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| 499 | bool cosmetic = pen.isCosmetic(); | 
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| 500 |  | 
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| 501 | m_points.reset(); | 
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| 502 | m_types.reset(); | 
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| 503 | m_points.reserve(path.elementCount()); | 
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| 504 | m_types.reserve(path.elementCount()); | 
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| 505 |  | 
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| 506 | qreal width = qpen_widthf(pen); | 
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| 507 | if (width == 0) | 
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| 508 | width = 1; | 
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| 509 |  | 
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| 510 | m_dash_stroker.setDashPattern(pen.dashPattern()); | 
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| 511 | m_dash_stroker.setStrokeWidth(cosmetic ? width * m_inv_scale : width); | 
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| 512 | m_dash_stroker.setDashOffset(pen.dashOffset()); | 
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| 513 | m_dash_stroker.setMiterLimit(pen.miterLimit()); | 
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| 514 | m_dash_stroker.setClipRect(clip); | 
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| 515 |  | 
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| 516 | float curvynessAdd, curvynessMul, roundness = 0; | 
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| 517 |  | 
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| 518 | // simplfy pens that are thin in device size (2px wide or less) | 
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| 519 | if (width < 2.5 && (cosmetic || m_inv_scale == 1)) { | 
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| 520 | curvynessAdd = 0.5; | 
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| 521 | curvynessMul = CURVE_FLATNESS / m_inv_scale; | 
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| 522 | roundness = 1; | 
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| 523 | } else if (cosmetic) { | 
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| 524 | curvynessAdd= width / 2; | 
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| 525 | curvynessMul= CURVE_FLATNESS; | 
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| 526 | roundness = qMax<int>(4, width * CURVE_FLATNESS); | 
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| 527 | } else { | 
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| 528 | curvynessAdd = width * m_inv_scale; | 
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| 529 | curvynessMul = CURVE_FLATNESS / m_inv_scale; | 
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| 530 | roundness = qMax<int>(4, width * curvynessMul); | 
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| 531 | } | 
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| 532 |  | 
|---|
| 533 | if (count < 2) | 
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| 534 | return; | 
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| 535 |  | 
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| 536 | const qreal *endPts = pts + (count<<1); | 
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| 537 |  | 
|---|
| 538 | m_dash_stroker.begin(this); | 
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| 539 |  | 
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| 540 | if (!types) { | 
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| 541 | m_dash_stroker.moveTo(pts[0], pts[1]); | 
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| 542 | pts += 2; | 
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| 543 | while (pts < endPts) { | 
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| 544 | m_dash_stroker.lineTo(pts[0], pts[1]); | 
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| 545 | pts += 2; | 
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| 546 | } | 
|---|
| 547 | } else { | 
|---|
| 548 | while (pts < endPts) { | 
|---|
| 549 | switch (*types) { | 
|---|
| 550 | case QPainterPath::MoveToElement: | 
|---|
| 551 | m_dash_stroker.moveTo(pts[0], pts[1]); | 
|---|
| 552 | pts += 2; | 
|---|
| 553 | ++types; | 
|---|
| 554 | break; | 
|---|
| 555 | case QPainterPath::LineToElement: | 
|---|
| 556 | m_dash_stroker.lineTo(pts[0], pts[1]); | 
|---|
| 557 | pts += 2; | 
|---|
| 558 | ++types; | 
|---|
| 559 | break; | 
|---|
| 560 | case QPainterPath::CurveToElement: { | 
|---|
| 561 | QBezier b = QBezier::fromPoints(*(((const QPointF *) pts) - 1), | 
|---|
| 562 | *(((const QPointF *) pts)), | 
|---|
| 563 | *(((const QPointF *) pts) + 1), | 
|---|
| 564 | *(((const QPointF *) pts) + 2)); | 
|---|
| 565 | QRectF bounds = b.bounds(); | 
|---|
| 566 | float rad = qMax(bounds.width(), bounds.height()); | 
|---|
| 567 | int threshold = qMin<float>(64, (rad + curvynessAdd) * curvynessMul); | 
|---|
| 568 | if (threshold < 4) | 
|---|
| 569 | threshold = 4; | 
|---|
| 570 |  | 
|---|
| 571 | qreal threshold_minus_1 = threshold - 1; | 
|---|
| 572 | for (int i=0; i<threshold; ++i) { | 
|---|
| 573 | QPointF pt = b.pointAt(i / threshold_minus_1); | 
|---|
| 574 | m_dash_stroker.lineTo(pt.x(), pt.y()); | 
|---|
| 575 | } | 
|---|
| 576 | pts += 6; | 
|---|
| 577 | types += 3; | 
|---|
| 578 | break; } | 
|---|
| 579 | default: break; | 
|---|
| 580 | } | 
|---|
| 581 | } | 
|---|
| 582 | } | 
|---|
| 583 |  | 
|---|
| 584 | m_dash_stroker.end(); | 
|---|
| 585 | } | 
|---|
| 586 |  | 
|---|
| 587 | QT_END_NAMESPACE | 
|---|
| 588 |  | 
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