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451 lines
9.5 KiB
C++
451 lines
9.5 KiB
C++
/*
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Copyright (C) 2001 Kimmo Pekkola
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*/
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#include "StdAfx.h"
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#include "MeterLine.h"
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#include "Measure.h"
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#include "Logger.h"
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#include "../Common/Gfx/Canvas.h"
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using namespace Gdiplus;
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/*
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** The constructor
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**
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*/
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MeterLine::MeterLine(MeterWindow* meterWindow, const WCHAR* name) : Meter(meterWindow, name),
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m_Autoscale(false),
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m_HorizontalLines(false),
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m_Flip(false),
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m_LineWidth(1.0),
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m_HorizontalColor(Color::Black),
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m_CurrentPos(),
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m_GraphStartLeft(false),
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m_GraphHorizontalOrientation(false)
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{
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}
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/*
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** The destructor
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**
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*/
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MeterLine::~MeterLine()
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{
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}
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/*
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** create the buffer for the lines
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**
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*/
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void MeterLine::Initialize()
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{
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Meter::Initialize();
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size_t colorsSize = m_Colors.size();
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size_t allValuesSize = m_AllValues.size();
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size_t num = (allValuesSize > 0) ? m_AllValues[0].size() : 0;
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int maxSize = m_GraphHorizontalOrientation ? m_H : m_W;
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if (colorsSize != allValuesSize)
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{
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if (colorsSize > allValuesSize)
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{
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for (size_t i = allValuesSize; i < colorsSize; ++i)
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{
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m_AllValues.push_back(std::vector<double>());
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if (maxSize > 0)
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{
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m_AllValues.back().assign(maxSize, 0.0);
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}
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}
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}
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else
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{
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m_AllValues.resize(colorsSize);
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}
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}
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if (maxSize < 0 || num != (size_t)maxSize)
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{
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if (m_CurrentPos >= maxSize) m_CurrentPos = 0;
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num = (maxSize < 0) ? 0 : maxSize;
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for (size_t i = 0; i < allValuesSize; ++i)
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{
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if (num != m_AllValues[i].size())
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{
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m_AllValues[i].resize(num, 0.0);
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}
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}
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}
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}
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/*
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** Read the options specified in the ini file.
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**
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*/
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void MeterLine::ReadOptions(ConfigParser& parser, const WCHAR* section)
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{
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WCHAR tmpName[64];
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// Store the current number of lines so we know if the buffer needs to be updated
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int oldLineCount = (int)m_Colors.size();
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int oldSize = m_GraphHorizontalOrientation ? m_H : m_W;
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bool oldGraphHorizontalOrientation = m_GraphHorizontalOrientation;
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Meter::ReadOptions(parser, section);
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int lineCount = parser.ReadInt(section, L"LineCount", 1);
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m_Colors.clear();
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m_ScaleValues.clear();
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for (int i = 0; i < lineCount; ++i)
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{
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if (i == 0)
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{
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wcsncpy_s(tmpName, L"LineColor", _TRUNCATE);
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}
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else
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{
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_snwprintf_s(tmpName, _TRUNCATE, L"LineColor%i", i + 1);
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}
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m_Colors.push_back(parser.ReadColor(section, tmpName, Color::White));
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if (i == 0)
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{
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wcsncpy_s(tmpName, L"Scale", _TRUNCATE);
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}
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else
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{
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_snwprintf_s(tmpName, _TRUNCATE, L"Scale%i", i + 1);
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}
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m_ScaleValues.push_back(parser.ReadFloat(section, tmpName, 1.0));
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}
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m_Flip = 0!=parser.ReadInt(section, L"Flip", 0);
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m_Autoscale = 0!=parser.ReadInt(section, L"AutoScale", 0);
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m_LineWidth = parser.ReadFloat(section, L"LineWidth", 1.0);
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m_HorizontalLines = 0!=parser.ReadInt(section, L"HorizontalLines", 0);
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ARGB color = parser.ReadColor(section, L"HorizontalColor", Color::Black); // This is left here for backwards compatibility
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m_HorizontalColor = parser.ReadColor(section, L"HorizontalLineColor", color); // This is what it should be
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const WCHAR* graph = parser.ReadString(section, L"GraphStart", L"RIGHT").c_str();
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if (_wcsicmp(graph, L"RIGHT") == 0)
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{
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m_GraphStartLeft = false;
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}
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else if (_wcsicmp(graph, L"LEFT") == 0)
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{
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m_GraphStartLeft = true;
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}
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else
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{
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LogErrorF(this, L"GraphStart=%s is not valid", graph);
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}
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graph = parser.ReadString(section, L"GraphOrientation", L"VERTICAL").c_str();
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if (_wcsicmp(graph, L"VERTICAL") == 0)
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{
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m_GraphHorizontalOrientation = false;
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}
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else if (_wcsicmp(graph, L"HORIZONTAL") == 0)
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{
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m_GraphHorizontalOrientation = true;
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}
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else
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{
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LogErrorF(this, L"GraphOrientation=%s is not valid", graph);
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}
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if (m_Initialized)
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{
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int maxSize = m_GraphHorizontalOrientation ? m_H : m_W;
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if (oldLineCount != lineCount || oldSize != maxSize || oldGraphHorizontalOrientation != m_GraphHorizontalOrientation)
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{
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m_AllValues.clear();
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m_CurrentPos = 0;
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Initialize();
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}
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}
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}
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/*
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** Updates the value(s) from the measures.
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**
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*/
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bool MeterLine::Update()
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{
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if (Meter::Update() && !m_Measures.empty())
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{
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int maxSize = m_GraphHorizontalOrientation ? m_H : m_W;
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if (maxSize > 0)
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{
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int allValuesSize = (int)m_AllValues.size();
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int counter = 0;
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for (auto i = m_Measures.cbegin(); counter < allValuesSize && i != m_Measures.cend(); ++i, ++counter)
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{
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m_AllValues[counter][m_CurrentPos] = (*i)->GetValue();
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}
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++m_CurrentPos;
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m_CurrentPos %= maxSize;
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}
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return true;
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}
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return false;
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}
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/*
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** Draws the meter on the double buffer
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**
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*/
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bool MeterLine::Draw(Gfx::Canvas& canvas)
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{
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int maxSize = m_GraphHorizontalOrientation ? m_H : m_W;
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if (!Meter::Draw(canvas) || maxSize <= 0) return false;
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Gdiplus::Graphics& graphics = canvas.BeginGdiplusContext();
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double maxValue = 0.0;
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int counter = 0;
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// Find the maximum value
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if (m_Autoscale)
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{
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double newValue = 0;
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counter = 0;
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for (auto i = m_AllValues.cbegin(); i != m_AllValues.cend(); ++i)
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{
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double scale = m_ScaleValues[counter];
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for (auto j = (*i).cbegin(); j != (*i).cend(); ++j)
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{
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double val = (*j) * scale;
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newValue = max(newValue, val);
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}
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++counter;
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}
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// Scale the value up to nearest power of 2
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if (newValue > DBL_MAX / 2.0)
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{
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maxValue = DBL_MAX;
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}
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else
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{
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maxValue = 2.0;
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while (maxValue < newValue)
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{
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maxValue *= 2.0;
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}
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}
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}
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else
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{
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for (auto i = m_Measures.cbegin(); i != m_Measures.cend(); ++i)
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{
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double val = (*i)->GetMaxValue();
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maxValue = max(maxValue, val);
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}
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if (maxValue == 0.0)
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{
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maxValue = 1.0;
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}
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}
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int x = GetX();
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int y = GetY();
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// Draw the horizontal lines
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if (m_HorizontalLines)
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{
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// Calc the max number of lines we should draw
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int maxLines = m_H / 4; // one line per 4 pixels is max
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int numOfLines;
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// Check the highest power of 2 that fits in maxLines
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int power = 2;
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while (power < maxLines)
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{
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power *= 2;
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}
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numOfLines = ((int)maxValue % power) + 1;
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Pen pen(m_HorizontalColor);
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REAL Y;
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for (int j = 0; j < numOfLines; ++j)
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{
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Y = (REAL)((j + 1) * m_H / (numOfLines + 1));
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Y = y + m_H - Y - 1;
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graphics.DrawLine(&pen, (REAL)x, Y, (REAL)(x + m_W - 1), Y); // GDI+
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}
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}
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// Draw all the lines
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if (m_GraphHorizontalOrientation)
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{
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const REAL W = m_W - 1.0f;
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counter = 0;
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for (auto i = m_AllValues.cbegin(); i != m_AllValues.cend(); ++i)
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{
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// Draw a line
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REAL X, oldX;
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const double scale = m_ScaleValues[counter] * W / maxValue;
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int pos = m_CurrentPos;
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auto calcX = [&](REAL& _x)
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{
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_x = (REAL)((*i)[pos] * scale);
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_x = min(_x, W);
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_x = max(_x, 0.0f);
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_x = x + (m_GraphStartLeft ? _x : W - _x);
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};
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calcX(oldX);
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// Cache all lines
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GraphicsPath path;
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if (!m_Flip)
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{
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for (int j = y + 1, R = y + m_H; j < R; ++j)
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{
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++pos;
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pos %= m_H;
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calcX(X);
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path.AddLine(oldX, (REAL)(j - 1), X, (REAL)j);
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oldX = X;
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}
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}
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else
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{
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for (int j = y + m_H, R = y + 1; j > R; --j)
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{
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++pos;
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pos %= m_H;
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calcX(X);
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path.AddLine(oldX, (REAL)(j - 1), X, (REAL)(j - 2));
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oldX = X;
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}
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}
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// Draw cached lines
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Pen pen(m_Colors[counter], (REAL)m_LineWidth);
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pen.SetLineJoin(LineJoinBevel);
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graphics.DrawPath(&pen, &path);
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++counter;
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}
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}
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else
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{
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const REAL H = m_H - 1.0f;
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counter = 0;
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for (auto i = m_AllValues.cbegin(); i != m_AllValues.cend(); ++i)
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{
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// Draw a line
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REAL Y, oldY;
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const double scale = m_ScaleValues[counter] * H / maxValue;
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int pos = m_CurrentPos;
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auto calcY = [&](REAL& _y)
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{
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_y = (REAL)((*i)[pos] * scale);
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_y = min(_y, H);
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_y = max(_y, 0.0f);
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_y = y + (m_Flip ? _y : H - _y);
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};
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calcY(oldY);
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// Cache all lines
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GraphicsPath path;
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if (!m_GraphStartLeft)
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{
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for (int j = x + 1, R = x + m_W; j < R; ++j)
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{
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++pos;
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pos %= m_W;
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calcY(Y);
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path.AddLine((REAL)(j - 1), oldY, (REAL)j, Y);
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oldY = Y;
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}
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}
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else
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{
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for (int j = x + m_W, R = x + 1; j > R; --j)
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{
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++pos;
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pos %= m_W;
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calcY(Y);
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path.AddLine((REAL)(j - 1), oldY, (REAL)(j - 2), Y);
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oldY = Y;
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}
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}
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// Draw cached lines
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Pen pen(m_Colors[counter], (REAL)m_LineWidth);
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pen.SetLineJoin(LineJoinBevel);
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graphics.DrawPath(&pen, &path);
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++counter;
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}
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}
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canvas.EndGdiplusContext();
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return true;
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}
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/*
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** Overwritten method to handle the other measure bindings.
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**
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*/
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void MeterLine::BindMeasures(ConfigParser& parser, const WCHAR* section)
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{
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if (BindPrimaryMeasure(parser, section, false))
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{
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BindSecondaryMeasures(parser, section);
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}
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}
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