swh:1:snp:e6d42e6731ce66e3c09de07ac49964c03139e990
Tip revision: 26b818c8be2be41dd673d938b403c5c7562635de authored by Travis CI on 28 November 2019, 13:55:12 UTC
Deploy code docs to GitHub Pages Travis build: 305
Deploy code docs to GitHub Pages Travis build: 305
Tip revision: 26b818c
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<div class="title">OxModelT1Shmolli.hxx</div> </div>
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<a href="_ox_model_t1_shmolli_8hxx.html">Go to the documentation of this file.</a><div class="fragment"><div class="line"><a name="l00001"></a><span class="lineno"> 1</span> </div>
<div class="line"><a name="l00007"></a><span class="lineno"> 7</span> <span class="preprocessor">#ifndef Tomato_OXModelT1Shmolli_HXX</span></div>
<div class="line"><a name="l00008"></a><span class="lineno"> 8</span> <span class="preprocessor"></span><span class="preprocessor">#define Tomato_OXModelT1Shmolli_HXX</span></div>
<div class="line"><a name="l00009"></a><span class="lineno"> 9</span> <span class="preprocessor"></span></div>
<div class="line"><a name="l00010"></a><span class="lineno"> 10</span> <span class="keyword">namespace </span>Ox {</div>
<div class="line"><a name="l00011"></a><span class="lineno"> 11</span> </div>
<div class="line"><a name="l00012"></a><span class="lineno"> 12</span> </div>
<div class="line"><a name="l00013"></a><span class="lineno"> 13</span>  <span class="keyword">template</span>< <span class="keyword">typename</span> MeasureType ></div>
<div class="line"><a name="l00014"></a><span class="lineno"> 14</span>  MeasureType</div>
<div class="line"><a name="l00015"></a><span class="lineno"> 15</span>  <a class="code" href="class_ox_1_1_model_t1_shmolli.html#a72576d4db2ff938037c3d9d4fe25b9d7">ModelT1Shmolli<MeasureType></a></div>
<div class="line"><a name="l00016"></a><span class="lineno"><a class="line" href="class_ox_1_1_model_t1_shmolli.html#a72576d4db2ff938037c3d9d4fe25b9d7"> 16</a></span> <a class="code" href="class_ox_1_1_model_t1_shmolli.html#a72576d4db2ff938037c3d9d4fe25b9d7"> ::calcModelValue</a>(<span class="keyword">const</span> MeasureType* parameters, MeasureType time){</div>
<div class="line"><a name="l00017"></a><span class="lineno"> 17</span>  MeasureType A = parameters[0];</div>
<div class="line"><a name="l00018"></a><span class="lineno"> 18</span>  MeasureType B = parameters[1];</div>
<div class="line"><a name="l00019"></a><span class="lineno"> 19</span>  MeasureType T1star = parameters[2];</div>
<div class="line"><a name="l00020"></a><span class="lineno"> 20</span> </div>
<div class="line"><a name="l00021"></a><span class="lineno"> 21</span>  MeasureType calculated = 0;</div>
<div class="line"><a name="l00022"></a><span class="lineno"> 22</span> </div>
<div class="line"><a name="l00023"></a><span class="lineno"> 23</span>  <span class="keywordflow">if</span> (_preventUnderOverFlow){</div>
<div class="line"><a name="l00024"></a><span class="lineno"> 24</span>  <span class="keywordflow">if</span> (fabs(T1star) <= (time*0.005 ))</div>
<div class="line"><a name="l00025"></a><span class="lineno"> 25</span>  calculated = A; <span class="comment">//prevent underflow when (-mTI/A[2]) < (-500) -- div/0, e^-500 is 0.0000</span></div>
<div class="line"><a name="l00026"></a><span class="lineno"> 26</span>  <span class="keywordflow">else</span> <span class="keywordflow">if</span> (fabs(T1star) >= (time*500 ))</div>
<div class="line"><a name="l00027"></a><span class="lineno"> 27</span>  calculated = (A - B*exp((MeasureType)-500)); <span class="comment">//prevent overflow</span></div>
<div class="line"><a name="l00028"></a><span class="lineno"> 28</span>  }</div>
<div class="line"><a name="l00029"></a><span class="lineno"> 29</span> </div>
<div class="line"><a name="l00030"></a><span class="lineno"> 30</span>  <span class="comment">// if the previous block has calculated someting</span></div>
<div class="line"><a name="l00031"></a><span class="lineno"> 31</span>  <span class="keywordflow">if</span> (calculated != 0){</div>
<div class="line"><a name="l00032"></a><span class="lineno"> 32</span>  <span class="keywordflow">return</span> calculated;</div>
<div class="line"><a name="l00033"></a><span class="lineno"> 33</span>  }</div>
<div class="line"><a name="l00034"></a><span class="lineno"> 34</span> </div>
<div class="line"><a name="l00035"></a><span class="lineno"> 35</span>  <span class="comment">// if the numbers are unreasonable</span></div>
<div class="line"><a name="l00036"></a><span class="lineno"> 36</span>  <span class="keywordflow">if</span> (fabs(T1star) < std::numeric_limits<MeasureType>::min()){</div>
<div class="line"><a name="l00037"></a><span class="lineno"> 37</span>  <span class="keywordflow">return</span> calculated;</div>
<div class="line"><a name="l00038"></a><span class="lineno"> 38</span>  }</div>
<div class="line"><a name="l00039"></a><span class="lineno"> 39</span> </div>
<div class="line"><a name="l00040"></a><span class="lineno"> 40</span>  <span class="keywordflow">if</span> (_expAbsCost) {</div>
<div class="line"><a name="l00041"></a><span class="lineno"> 41</span>  calculated = A - B * exp((MeasureType) -fabs( time / T1star ) );</div>
<div class="line"><a name="l00042"></a><span class="lineno"> 42</span>  } <span class="keywordflow">else</span> {</div>
<div class="line"><a name="l00043"></a><span class="lineno"> 43</span>  calculated = A - B * exp((MeasureType) -time / T1star );</div>
<div class="line"><a name="l00044"></a><span class="lineno"> 44</span>  }</div>
<div class="line"><a name="l00045"></a><span class="lineno"> 45</span> </div>
<div class="line"><a name="l00046"></a><span class="lineno"> 46</span>  <span class="keywordflow">return</span> calculated;</div>
<div class="line"><a name="l00047"></a><span class="lineno"> 47</span>  }</div>
<div class="line"><a name="l00048"></a><span class="lineno"> 48</span> </div>
<div class="line"><a name="l00049"></a><span class="lineno"> 49</span>  <span class="keyword">template</span>< <span class="keyword">typename</span> MeasureType ></div>
<div class="line"><a name="l00050"></a><span class="lineno"> 50</span>  <span class="keywordtype">void</span></div>
<div class="line"><a name="l00051"></a><span class="lineno"> 51</span>  <a class="code" href="class_ox_1_1_model_t1_shmolli.html#ae393758f44f51e2fddae4c3c919fe4db">ModelT1Shmolli<MeasureType></a></div>
<div class="line"><a name="l00052"></a><span class="lineno"><a class="line" href="class_ox_1_1_model_t1_shmolli.html#ae393758f44f51e2fddae4c3c919fe4db"> 52</a></span> <a class="code" href="class_ox_1_1_model_t1_shmolli.html#ae393758f44f51e2fddae4c3c919fe4db"> ::calcLSResiduals</a>(<span class="keyword">const</span> MeasureType* parameters, MeasureType* residuals){</div>
<div class="line"><a name="l00053"></a><span class="lineno"> 53</span> </div>
<div class="line"><a name="l00054"></a><span class="lineno"> 54</span>  <span class="comment">//std::cout << "calcLSResiduals" << std::endl;</span></div>
<div class="line"><a name="l00055"></a><span class="lineno"> 55</span>  <span class="keywordtype">unsigned</span> <span class="keywordtype">int</span> nSamples = this->_nSamples;</div>
<div class="line"><a name="l00056"></a><span class="lineno"> 56</span> </div>
<div class="line"><a name="l00057"></a><span class="lineno"> 57</span>  MeasureType A = parameters[0];</div>
<div class="line"><a name="l00058"></a><span class="lineno"> 58</span>  MeasureType B = parameters[1];</div>
<div class="line"><a name="l00059"></a><span class="lineno"> 59</span>  MeasureType T1star = parameters[2];</div>
<div class="line"><a name="l00060"></a><span class="lineno"> 60</span> </div>
<div class="line"><a name="l00061"></a><span class="lineno"> 61</span>  <span class="keywordflow">for</span> (<span class="keywordtype">unsigned</span> <span class="keywordtype">int</span> i = 0; i < nSamples; i++) {</div>
<div class="line"><a name="l00062"></a><span class="lineno"> 62</span>  MeasureType invTime = this->_InvTimes[i];</div>
<div class="line"><a name="l00063"></a><span class="lineno"> 63</span>  MeasureType measured = this->_Signal[i];</div>
<div class="line"><a name="l00064"></a><span class="lineno"> 64</span>  MeasureType calculated = 0;</div>
<div class="line"><a name="l00065"></a><span class="lineno"> 65</span> </div>
<div class="line"><a name="l00066"></a><span class="lineno"> 66</span>  calculated = calcModelValue(parameters, invTime);</div>
<div class="line"><a name="l00067"></a><span class="lineno"> 67</span> </div>
<div class="line"><a name="l00068"></a><span class="lineno"> 68</span>  residuals[i] = calculated - measured;</div>
<div class="line"><a name="l00069"></a><span class="lineno"> 69</span>  }</div>
<div class="line"><a name="l00070"></a><span class="lineno"> 70</span>  }</div>
<div class="line"><a name="l00071"></a><span class="lineno"> 71</span> </div>
<div class="line"><a name="l00072"></a><span class="lineno"> 72</span>  <span class="keyword">template</span>< <span class="keyword">typename</span> MeasureType ></div>
<div class="line"><a name="l00073"></a><span class="lineno"> 73</span>  <span class="keywordtype">void</span></div>
<div class="line"><a name="l00074"></a><span class="lineno"> 74</span>  <a class="code" href="class_ox_1_1_model_t1_shmolli.html#a667e5c9088ba65e0cba506246671e3da">ModelT1Shmolli<MeasureType></a></div>
<div class="line"><a name="l00075"></a><span class="lineno"><a class="line" href="class_ox_1_1_model_t1_shmolli.html#a667e5c9088ba65e0cba506246671e3da"> 75</a></span> <a class="code" href="class_ox_1_1_model_t1_shmolli.html#a667e5c9088ba65e0cba506246671e3da"> ::calcLSJacobian</a>(<span class="keyword">const</span> MeasureType* parameters, MeasureType* jacobian){</div>
<div class="line"><a name="l00076"></a><span class="lineno"> 76</span>  <span class="keywordtype">int</span> nSamples = this->_nSamples;</div>
<div class="line"><a name="l00077"></a><span class="lineno"> 77</span> </div>
<div class="line"><a name="l00078"></a><span class="lineno"> 78</span>  <span class="comment">//MeasureType A = parameters[0];</span></div>
<div class="line"><a name="l00079"></a><span class="lineno"> 79</span>  MeasureType B = parameters[1];</div>
<div class="line"><a name="l00080"></a><span class="lineno"> 80</span>  MeasureType T1star = parameters[2];</div>
<div class="line"><a name="l00081"></a><span class="lineno"> 81</span>  MeasureType invTime, myexp;</div>
<div class="line"><a name="l00082"></a><span class="lineno"> 82</span> </div>
<div class="line"><a name="l00083"></a><span class="lineno"> 83</span>  <span class="keywordflow">for</span> (<span class="keywordtype">int</span> i = 0; i < nSamples; i++) {</div>
<div class="line"><a name="l00084"></a><span class="lineno"> 84</span>  invTime = this->_InvTimes[i];</div>
<div class="line"><a name="l00085"></a><span class="lineno"> 85</span>  myexp = exp(-invTime/T1star);</div>
<div class="line"><a name="l00086"></a><span class="lineno"> 86</span> </div>
<div class="line"><a name="l00087"></a><span class="lineno"> 87</span>  <span class="comment">// calculated in matlab (syms A B T1 t), f=A-B*exp(-t./T1); diff(f,A), diff(f,B), diff(calcCostValue,T1)</span></div>
<div class="line"><a name="l00088"></a><span class="lineno"> 88</span>  jacobian[i*3+0] = 1.0;</div>
<div class="line"><a name="l00089"></a><span class="lineno"> 89</span>  jacobian[i*3+1] = -myexp;</div>
<div class="line"><a name="l00090"></a><span class="lineno"> 90</span>  jacobian[i*3+2] = -B*invTime*myexp/(T1star*T1star);</div>
<div class="line"><a name="l00091"></a><span class="lineno"> 91</span>  }</div>
<div class="line"><a name="l00092"></a><span class="lineno"> 92</span>  }</div>
<div class="line"><a name="l00093"></a><span class="lineno"> 93</span> </div>
<div class="line"><a name="l00094"></a><span class="lineno"> 94</span>  <span class="keyword">template</span>< <span class="keyword">typename</span> MeasureType ></div>
<div class="line"><a name="l00095"></a><span class="lineno"> 95</span>  MeasureType</div>
<div class="line"><a name="l00096"></a><span class="lineno"> 96</span>  <a class="code" href="class_ox_1_1_model_t1_shmolli.html#a0f9b89832a6321b5b54abb9e219e803d">ModelT1Shmolli<MeasureType></a></div>
<div class="line"><a name="l00097"></a><span class="lineno"><a class="line" href="class_ox_1_1_model_t1_shmolli.html#a0f9b89832a6321b5b54abb9e219e803d"> 97</a></span> <a class="code" href="class_ox_1_1_model_t1_shmolli.html#a0f9b89832a6321b5b54abb9e219e803d"> ::calcCostValue</a>(<span class="keyword">const</span> MeasureType* parameters){</div>
<div class="line"><a name="l00098"></a><span class="lineno"> 98</span> </div>
<div class="line"><a name="l00099"></a><span class="lineno"> 99</span>  <span class="comment">//std::cout << "calcCostValue" << std::endl;</span></div>
<div class="line"><a name="l00100"></a><span class="lineno"> 100</span>  <span class="keywordtype">int</span> nSamples = this->_nSamples;</div>
<div class="line"><a name="l00101"></a><span class="lineno"> 101</span> </div>
<div class="line"><a name="l00102"></a><span class="lineno"> 102</span>  calcLSResiduals(parameters, this->_Residuals);</div>
<div class="line"><a name="l00103"></a><span class="lineno"> 103</span>  MeasureType result = 0;</div>
<div class="line"><a name="l00104"></a><span class="lineno"> 104</span> </div>
<div class="line"><a name="l00105"></a><span class="lineno"> 105</span>  <span class="keywordflow">if</span> (_rootMedianSquareCost){</div>
<div class="line"><a name="l00106"></a><span class="lineno"> 106</span>  <span class="comment">// residuals are nor residuals squared!!!</span></div>
<div class="line"><a name="l00107"></a><span class="lineno"> 107</span>  <span class="keywordflow">for</span> (<span class="keywordtype">int</span> i = 0; i < nSamples; ++i) {</div>
<div class="line"><a name="l00108"></a><span class="lineno"> 108</span>  this->_Residuals[i] = this->_Residuals[i] * this->_Residuals[i];</div>
<div class="line"><a name="l00109"></a><span class="lineno"> 109</span>  }</div>
<div class="line"><a name="l00110"></a><span class="lineno"> 110</span>  <span class="comment">// residuals are nor residuals squared!!!</span></div>
<div class="line"><a name="l00111"></a><span class="lineno"> 111</span>  result = KWUtil::calcMedianArray(nSamples, this->_Residuals);</div>
<div class="line"><a name="l00112"></a><span class="lineno"> 112</span>  <span class="comment">// residuals are nor residuals squared!!!</span></div>
<div class="line"><a name="l00113"></a><span class="lineno"> 113</span> </div>
<div class="line"><a name="l00114"></a><span class="lineno"> 114</span>  } <span class="keywordflow">else</span> {</div>
<div class="line"><a name="l00115"></a><span class="lineno"> 115</span> </div>
<div class="line"><a name="l00116"></a><span class="lineno"> 116</span>  <span class="keywordflow">for</span> (<span class="keywordtype">int</span> i = 0; i < nSamples; ++i) {</div>
<div class="line"><a name="l00117"></a><span class="lineno"> 117</span>  result = result + this->_Residuals[i] * this->_Residuals[i];</div>
<div class="line"><a name="l00118"></a><span class="lineno"> 118</span>  }</div>
<div class="line"><a name="l00119"></a><span class="lineno"> 119</span> </div>
<div class="line"><a name="l00120"></a><span class="lineno"> 120</span>  }</div>
<div class="line"><a name="l00121"></a><span class="lineno"> 121</span> </div>
<div class="line"><a name="l00123"></a><span class="lineno"> 123</span>  <span class="keywordflow">if</span> (_costHeuristic){</div>
<div class="line"><a name="l00124"></a><span class="lineno"> 124</span>  <span class="keywordflow">if</span>(parameters[0] < 0. )</div>
<div class="line"><a name="l00125"></a><span class="lineno"> 125</span>  result -= parameters[0]; <span class="comment">// A<0 negative Mz0 estimate</span></div>
<div class="line"><a name="l00126"></a><span class="lineno"> 126</span>  <span class="keywordflow">if</span>(parameters[0] > parameters[1])</div>
<div class="line"><a name="l00127"></a><span class="lineno"> 127</span>  result += (parameters[0] - parameters[1]); <span class="comment">// less than saturation: B<A, should be B=2*A ideally</span></div>
<div class="line"><a name="l00128"></a><span class="lineno"> 128</span>  <span class="keywordflow">if</span>(parameters[1] > (4. * parameters[0]))</div>
<div class="line"><a name="l00129"></a><span class="lineno"> 129</span>  result += (parameters[1]-4. * parameters[0]); <span class="comment">// inversion ratio very high, likely error or SFFP</span></div>
<div class="line"><a name="l00130"></a><span class="lineno"> 130</span>  <span class="keywordflow">if</span>(parameters[2] < 0.)</div>
<div class="line"><a name="l00131"></a><span class="lineno"> 131</span>  result -= parameters[2]; <span class="comment">// negative time constant</span></div>
<div class="line"><a name="l00132"></a><span class="lineno"> 132</span>  }</div>
<div class="line"><a name="l00133"></a><span class="lineno"> 133</span> </div>
<div class="line"><a name="l00134"></a><span class="lineno"> 134</span>  <span class="keywordflow">return</span> result;</div>
<div class="line"><a name="l00135"></a><span class="lineno"> 135</span> </div>
<div class="line"><a name="l00136"></a><span class="lineno"> 136</span> </div>
<div class="line"><a name="l00137"></a><span class="lineno"> 137</span>  }</div>
<div class="line"><a name="l00138"></a><span class="lineno"> 138</span> </div>
<div class="line"><a name="l00139"></a><span class="lineno"> 139</span>  <span class="keyword">template</span>< <span class="keyword">typename</span> MeasureType ></div>
<div class="line"><a name="l00140"></a><span class="lineno"> 140</span>  <span class="keywordtype">void</span></div>
<div class="line"><a name="l00141"></a><span class="lineno"> 141</span>  <a class="code" href="class_ox_1_1_model_t1_shmolli.html#afaadbc879361f3ea674fe79a9fc1cf49">ModelT1Shmolli<MeasureType></a></div>
<div class="line"><a name="l00142"></a><span class="lineno"><a class="line" href="class_ox_1_1_model_t1_shmolli.html#afaadbc879361f3ea674fe79a9fc1cf49"> 142</a></span> <a class="code" href="class_ox_1_1_model_t1_shmolli.html#afaadbc879361f3ea674fe79a9fc1cf49"> ::calcCostDerivative</a>(<span class="keyword">const</span> MeasureType* parameters, MeasureType* derivative){</div>
<div class="line"><a name="l00143"></a><span class="lineno"> 143</span>  <span class="comment">//std::cout << "calcCostDerivative" << std::endl;</span></div>
<div class="line"><a name="l00144"></a><span class="lineno"> 144</span> </div>
<div class="line"><a name="l00145"></a><span class="lineno"> 145</span>  <span class="keywordtype">int</span> nSamples = this->_nSamples;</div>
<div class="line"><a name="l00146"></a><span class="lineno"> 146</span> </div>
<div class="line"><a name="l00147"></a><span class="lineno"> 147</span>  derivative[0] = 0;</div>
<div class="line"><a name="l00148"></a><span class="lineno"> 148</span>  derivative[1] = 0;</div>
<div class="line"><a name="l00149"></a><span class="lineno"> 149</span>  derivative[2] = 0;</div>
<div class="line"><a name="l00150"></a><span class="lineno"> 150</span> </div>
<div class="line"><a name="l00151"></a><span class="lineno"> 151</span>  MeasureType measured, invTime, myexp;</div>
<div class="line"><a name="l00152"></a><span class="lineno"> 152</span> </div>
<div class="line"><a name="l00153"></a><span class="lineno"> 153</span>  MeasureType A = parameters[0];</div>
<div class="line"><a name="l00154"></a><span class="lineno"> 154</span>  MeasureType B = parameters[1];</div>
<div class="line"><a name="l00155"></a><span class="lineno"> 155</span>  MeasureType T1star = parameters[2];</div>
<div class="line"><a name="l00156"></a><span class="lineno"> 156</span> </div>
<div class="line"><a name="l00157"></a><span class="lineno"> 157</span>  <span class="comment">// calculated in matlab (syms A B T1 t y), f=(A-B*exp(-t./T1)-y).^2; diff(f,A), diff(f,B), diff(calcCostValue,T1)</span></div>
<div class="line"><a name="l00158"></a><span class="lineno"> 158</span>  <span class="keywordflow">for</span> (<span class="keywordtype">int</span> i = 0; i < nSamples; ++i){</div>
<div class="line"><a name="l00159"></a><span class="lineno"> 159</span>  measured = this->getSignal()[i];</div>
<div class="line"><a name="l00160"></a><span class="lineno"> 160</span>  invTime = this->getInvTimes()[i];</div>
<div class="line"><a name="l00161"></a><span class="lineno"> 161</span>  myexp = exp(-invTime/T1star);</div>
<div class="line"><a name="l00162"></a><span class="lineno"> 162</span> </div>
<div class="line"><a name="l00163"></a><span class="lineno"> 163</span>  derivative[0] = derivative[0] + A*2 - measured*2 - myexp*B*2;;</div>
<div class="line"><a name="l00164"></a><span class="lineno"> 164</span>  derivative[1] = derivative[1] + myexp*2*(measured - A + myexp*B);</div>
<div class="line"><a name="l00165"></a><span class="lineno"> 165</span>  derivative[2] = derivative[2] + (invTime*myexp*B*2*(measured - A + myexp*B))/(T1star*T1star);</div>
<div class="line"><a name="l00166"></a><span class="lineno"> 166</span>  }</div>
<div class="line"><a name="l00167"></a><span class="lineno"> 167</span>  }</div>
<div class="line"><a name="l00168"></a><span class="lineno"> 168</span> </div>
<div class="line"><a name="l00169"></a><span class="lineno"> 169</span> } <span class="comment">//namespace Ox</span></div>
<div class="line"><a name="l00170"></a><span class="lineno"> 170</span> </div>
<div class="line"><a name="l00171"></a><span class="lineno"> 171</span> </div>
<div class="line"><a name="l00172"></a><span class="lineno"> 172</span> <span class="preprocessor">#endif //Tomato_OXModelT1Shmolli_HXX</span></div>
<div class="ttc" id="class_ox_1_1_model_t1_shmolli_html_a72576d4db2ff938037c3d9d4fe25b9d7"><div class="ttname"><a href="class_ox_1_1_model_t1_shmolli.html#a72576d4db2ff938037c3d9d4fe25b9d7">Ox::ModelT1Shmolli::calcModelValue</a></div><div class="ttdeci">virtual MeasureType calcModelValue(const MeasureType *parameters, MeasureType time)</div><div class="ttdef"><b>Definition:</b> OxModelT1Shmolli.hxx:16</div></div>
<div class="ttc" id="class_ox_1_1_model_t1_shmolli_html_ae393758f44f51e2fddae4c3c919fe4db"><div class="ttname"><a href="class_ox_1_1_model_t1_shmolli.html#ae393758f44f51e2fddae4c3c919fe4db">Ox::ModelT1Shmolli::calcLSResiduals</a></div><div class="ttdeci">virtual void calcLSResiduals(const MeasureType *parameters, MeasureType *residuals)</div><div class="ttdef"><b>Definition:</b> OxModelT1Shmolli.hxx:52</div></div>
<div class="ttc" id="class_ox_1_1_model_t1_shmolli_html_a0f9b89832a6321b5b54abb9e219e803d"><div class="ttname"><a href="class_ox_1_1_model_t1_shmolli.html#a0f9b89832a6321b5b54abb9e219e803d">Ox::ModelT1Shmolli::calcCostValue</a></div><div class="ttdeci">virtual MeasureType calcCostValue(const MeasureType *parameters)</div><div class="ttdef"><b>Definition:</b> OxModelT1Shmolli.hxx:97</div></div>
<div class="ttc" id="class_ox_1_1_model_t1_shmolli_html_a667e5c9088ba65e0cba506246671e3da"><div class="ttname"><a href="class_ox_1_1_model_t1_shmolli.html#a667e5c9088ba65e0cba506246671e3da">Ox::ModelT1Shmolli::calcLSJacobian</a></div><div class="ttdeci">virtual void calcLSJacobian(const MeasureType *parameters, MeasureType *jacobian)</div><div class="ttdef"><b>Definition:</b> OxModelT1Shmolli.hxx:75</div></div>
<div class="ttc" id="class_ox_1_1_model_t1_shmolli_html_afaadbc879361f3ea674fe79a9fc1cf49"><div class="ttname"><a href="class_ox_1_1_model_t1_shmolli.html#afaadbc879361f3ea674fe79a9fc1cf49">Ox::ModelT1Shmolli::calcCostDerivative</a></div><div class="ttdeci">virtual void calcCostDerivative(const MeasureType *parameters, MeasureType *derivative)</div><div class="ttdef"><b>Definition:</b> OxModelT1Shmolli.hxx:142</div></div>
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