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1 // Copyright 2006-2010, Willem van Engen, Thomas Walters
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2 //
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3 // AIM-C: A C++ implementation of the Auditory Image Model
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4 // http://www.acousticscale.org/AIMC
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5 //
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6 // Licensed under the Apache License, Version 2.0 (the "License");
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7 // you may not use this file except in compliance with the License.
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8 // You may obtain a copy of the License at
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9 //
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10 // http://www.apache.org/licenses/LICENSE-2.0
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11 //
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12 // Unless required by applicable law or agreed to in writing, software
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13 // distributed under the License is distributed on an "AS IS" BASIS,
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14 // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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15 // See the License for the specific language governing permissions and
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16 // limitations under the License.
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17
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18 /*!
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19 * \file
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20 * \brief Time-representation graphics view
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21 *
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22 * \author Willem van Engen <cnbh@willem.engen.nl>
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23 * \date created 2006/09/26
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24 * \version \$Id: GraphicsViewTime.cpp 607 2008-06-25 00:14:14Z tom $
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25 */
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26
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27 #include "Support/Common.h"
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28
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29 #include <stdio.h>
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30
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31 #include "Support/SignalBank.h"
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32 #include "Modules/Output/Graphics/GraphicsView.h"
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33 #include "Modules/Output/Graphics/GraphicsViewTime.h"
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34
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35 GraphicsViewTime::GraphicsViewTime(Parameters *pParam)
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36 : GraphicsView(pParam) {
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37 }
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38
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39 GraphicsViewTime *GraphicsViewTime::Clone(GraphicsOutputDevice *pDev) {
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40 GraphicsViewTime *pView = new GraphicsViewTime(m_pParam);
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41 // Copy everything
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42 pView->m_pAxisX->SetDisplayRange(m_pAxisX->m_fMax, m_pAxisX->m_fMin);
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43 pView->m_pAxisX->SetDisplayScale(m_pAxisX->m_pScale->getType());
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44 pView->m_pAxisY->SetDisplayRange(m_pAxisY->m_fMax, m_pAxisY->m_fMin);
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45 pView->m_pAxisY->SetDisplayScale(m_pAxisY->m_pScale->getType());
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46 pView->m_pAxisFreq->SetDisplayRange(m_pAxisFreq->m_fMax, m_pAxisFreq->m_fMin);
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47 pView->m_pAxisFreq->SetDisplayScale(m_pAxisFreq->m_pScale->getType());
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48 return pView;
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49 }
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50
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51 void GraphicsViewTime::PlotAxes(const SignalBank &bank) {
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52 m_pDev->gColor3f(0.0f, 0.7f, 0.7f);
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53 // Vertical axis
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54 m_pDev->gBeginLineStrip();
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55 m_pDev->gVertex2f(m_fMarginLeft, m_fMarginBottom);
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56 m_pDev->gVertex2f(m_fMarginLeft, 1.0f - m_fMarginTop);
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57 m_pDev->gEnd();
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58 // Horizontal axis
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59 m_pDev->gBeginLineStrip();
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60 m_pDev->gVertex2f(m_fMarginLeft, m_fMarginBottom);
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61 m_pDev->gVertex2f(1.0f-m_fMarginRight, m_fMarginBottom);
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62 m_pDev->gEnd();
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63
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64 if (!m_bPlotLabels)
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65 return;
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66
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67 // Labels
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68 char sTxt[80];
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69 snprintf(sTxt, sizeof(sTxt) / sizeof(sTxt[0]),
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70 _S("%s [%.0f..%.0f Hz, %s scale]"),
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71 m_pAxisFreq->m_sLabel ? m_pAxisFreq->m_sLabel : "",
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72 m_pAxisFreq->m_fMin, m_pAxisFreq->m_fMax,
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73 m_pAxisFreq->m_pScale->getName());
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74 m_pDev->gText2f(0.0025f, 0.35f, sTxt, true);
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75 if (m_bPlotScaled) {
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76 snprintf(sTxt, sizeof(sTxt) / sizeof(sTxt[0]),
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77 _S("%s [cycles, %s scale]"),
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78 m_pAxisX->m_sLabel ? m_pAxisX->m_sLabel : "",
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79 m_pAxisX->m_pScale->getName());
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80 } else {
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81 snprintf(sTxt, sizeof(sTxt) / sizeof(sTxt[0]),
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82 _S("%s [%.2f..%.2f ms, %s scale]"),
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83 m_pAxisX->m_sLabel ? m_pAxisX->m_sLabel : "",
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84 m_pAxisX->m_fMin,
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85 m_pAxisX->m_fMax,
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86 m_pAxisX->m_pScale->getName());
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87 }
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88 m_pDev->gText2f(m_fMarginLeft, 0.0025f, sTxt, false);
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89
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90 // Frame time
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91 snprintf(sTxt, sizeof(sTxt)/sizeof(sTxt[0]), _S("t=%.0f ms"),
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92 pBank->getSampleTime(0));
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93 m_pDev->gText2f(0.8f, 0.0025f, sTxt, false);
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94 }
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95
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96 void GraphicsViewTime::PlotData(const vector<float> &signal,
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97 float sample_rate,
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98 float yOffset,
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99 float height,
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100 float xScale) {
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101 AIM_ASSERT(pSig);
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102 AIM_ASSERT(xScale >= 0 && xScale <= 1);
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103 AIM_ASSERT(height > 0 && height <= 1);
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104 AIM_ASSERT(yOffset >= 0 && yOffset <= 1);
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105 AIM_ASSERT(m_pAxisX && m_pAxisX->m_pScale);
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106 AIM_ASSERT(m_pAxisY && m_pAxisY->m_pScale);
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107
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108 // Make sure we get time is ms as x value
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109 xScale *= 1000.0 / sample_rate;
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110 m_pDev->gColor3f(1.0f, 1.0f, 0.8f);
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111 BeginDataStrip();
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112
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113 // Draw the signal.
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114 float x = 0;
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115 float y = 0;
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116 for (int i = 0; i < signal.size(); i++) {
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117 // Find out where to draw and do so
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118 x = xScale * i;
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119 y = signal[i];
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120 x = m_pAxisX->m_pScale->FromLinearScaled(x) + 0.5f;
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121 y = m_pAxisY->m_pScale->FromLinearScaled(y);
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122
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123 if (x < 0.0)
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124 continue;
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125
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126 // Now fit it into the drawing area
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127 x = x * (1.0f - m_fMarginLeft - m_fMarginRight) + m_fMarginLeft; // fit inside x-axis area
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128 PlotDataPoint(x, yOffset, y, height, false);
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129 /* There's no point in drawing anything when x>1.0, outside of view.
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130 * x is continuously increasing, so we can just stop completely. We need to
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131 * plot this point however, to finish the final line. */
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132 if (x > 1.0)
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133 break;
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134 }
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135 // Redraw the last point in case it's needed
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136 PlotDataPoint(x, yOffset, y, height, true);
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137
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138 m_pDev->gEnd();
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139 }
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