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Tweaks.
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@ -25,6 +25,9 @@
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using namespace Gdiplus;
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#define PI (3.14159265358979323846)
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#define CONVERT_TO_DEGREES(X) ((X) * (180.0 / PI))
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extern CRainmeter* Rainmeter;
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/*
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@ -134,9 +137,8 @@ bool CMeterRotator::Update()
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{
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if (m_ValueRemainder > 0)
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{
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LARGE_INTEGER time;
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time.QuadPart = (LONGLONG)m_Measure->GetValue();
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m_Value = (double)(time.QuadPart % m_ValueRemainder);
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LONGLONG time = (LONGLONG)m_Measure->GetValue();
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m_Value = (double)(time % m_ValueRemainder);
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m_Value /= (double)m_ValueRemainder;
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}
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else
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@ -169,9 +171,7 @@ bool CMeterRotator::Draw(Graphics& graphics)
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REAL cy = (REAL)(y + m_H / 2.0);
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// Calculate the rotation
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REAL angle = (REAL)(m_RotationAngle * m_Value + m_StartAngle);
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angle = angle * 180.0f / 3.14159265f; // Convert to degrees
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REAL angle = (REAL)(CONVERT_TO_DEGREES(m_RotationAngle * m_Value + m_StartAngle));
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graphics.TranslateTransform(cx, cy);
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graphics.RotateTransform(angle);
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@ -127,16 +127,21 @@ bool CMeterRoundLine::Draw(Graphics& graphics)
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// Calculate the center of for the line
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int x = GetX();
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int y = GetY();
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REAL cx = (REAL)(x + m_W / 2.0);
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REAL cy = (REAL)(y + m_H / 2.0);
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double cx = x + m_W / 2.0;
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double cy = y + m_H / 2.0;
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double lineStart = ((m_CntrlLineStart) ? m_LineStartShift * m_Value : 0) + m_LineStart;
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double lineLength = ((m_CntrlLineLength) ? m_LineLengthShift * m_Value : 0) + m_LineLength;
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// Calculate the end point of the line
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double angle = ((m_CntrlAngle) ? m_RotationAngle * m_Value : m_RotationAngle) + m_StartAngle;
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REAL e_cos = (REAL)cos(angle);
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REAL e_sin = (REAL)sin(angle);
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double e_cos = cos(angle);
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double e_sin = sin(angle);
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REAL sx = (REAL)(e_cos * lineStart + cx);
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REAL sy = (REAL)(e_sin * lineStart + cy);
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REAL ex = (REAL)(e_cos * lineLength + cx);
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REAL ey = (REAL)(e_sin * lineLength + cy);
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if (m_Solid)
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{
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@ -144,33 +149,23 @@ bool CMeterRoundLine::Draw(Graphics& graphics)
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REAL sweepAngle = (REAL)(CONVERT_TO_DEGREES(m_RotationAngle * m_Value));
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// Calculate the start point of the line
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REAL s_cos = (REAL)cos(m_StartAngle);
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REAL s_sin = (REAL)sin(m_StartAngle);
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double s_cos = cos(m_StartAngle);
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double s_sin = sin(m_StartAngle);
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//Create a path to surround the arc
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GraphicsPath path;
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path.AddArc((REAL)(cx - lineStart), (REAL)(cy - lineStart), (REAL)(lineStart * 2.0), (REAL)(lineStart * 2.0), startAngle, sweepAngle);
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path.AddLine((REAL)lineStart * s_cos + cx, (REAL)lineStart * s_sin + cy, (REAL)lineLength * s_cos + cx, (REAL)lineLength * s_sin + cy);
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path.AddLine((REAL)(lineStart * s_cos + cx), (REAL)(lineStart * s_sin + cy), (REAL)(lineLength * s_cos + cx), (REAL)(lineLength * s_sin + cy));
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path.AddArc((REAL)(cx - lineLength), (REAL)(cy - lineLength), (REAL)(lineLength * 2.0), (REAL)(lineLength * 2.0), startAngle, sweepAngle);
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path.AddLine((REAL)lineLength * e_cos + cx, (REAL)lineLength * e_sin + cy, (REAL)lineStart * e_cos + cx, (REAL)lineStart * e_sin + cy);
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path.AddLine(ex, ey, sx, sy);
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SolidBrush solidBrush(m_LineColor);
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graphics.FillPath(&solidBrush, &path);
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}
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else
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{
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// Set the length
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REAL x = e_cos * (REAL)lineLength + cx;
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REAL y = e_sin * (REAL)lineLength + cy;
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if (lineStart > 0.0)
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{
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cx += e_cos * (REAL)lineStart;
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cy += e_sin * (REAL)lineStart;
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}
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Pen pen(m_LineColor, (REAL)m_LineWidth);
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graphics.DrawLine(&pen, cx, cy, x, y);
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graphics.DrawLine(&pen, sx, sy, ex, ey);
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}
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return true;
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