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Anthony Barbier8140e1e2017-12-14 23:48:46 +0000108</div>
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119<a href="#pub-methods">Public Member Functions</a> </div>
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121<div class="title">GemmInterleaved&lt; strategy, To, Tr &gt; Class Template Reference</div> </div>
122</div><!--header-->
123<div class="contents">
124
125<p><code>#include &lt;<a class="el" href="gemm__interleaved_8hpp_source.xhtml">gemm_interleaved.hpp</a>&gt;</code></p>
126<div class="dynheader">
127Collaboration diagram for GemmInterleaved&lt; strategy, To, Tr &gt;:</div>
128<div class="dyncontent">
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Kaizen8938bd32017-09-28 14:38:23 +0100130</div>
131<center><span class="legend">[<a target="top" href="graph_legend.xhtml">legend</a>]</span></center></div>
132<table class="memberdecls">
133<tr class="heading"><td colspan="2"><h2 class="groupheader"><a name="pub-methods"></a>
134Public Member Functions</h2></td></tr>
135<tr class="memitem:abf5a58f6feffeae31f48b750cba9303d"><td class="memItemLeft" align="right" valign="top">size_t&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_gemm_interleaved.xhtml#abf5a58f6feffeae31f48b750cba9303d">get_working_size</a> () const override</td></tr>
136<tr class="separator:abf5a58f6feffeae31f48b750cba9303d"><td class="memSeparator" colspan="2">&#160;</td></tr>
137<tr class="memitem:ad4b554ff56ba355e66b70698b1393085"><td class="memItemLeft" align="right" valign="top">&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_gemm_interleaved.xhtml#ad4b554ff56ba355e66b70698b1393085">GemmInterleaved</a> (const CPUInfo *ci, const unsigned int M, const unsigned int N, const unsigned int K, const bool trA, const bool trB)</td></tr>
138<tr class="separator:ad4b554ff56ba355e66b70698b1393085"><td class="memSeparator" colspan="2">&#160;</td></tr>
139<tr class="memitem:a51e6173ab8fcea6e02f04352d43838dd"><td class="memItemLeft" align="right" valign="top">void&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_gemm_interleaved.xhtml#a51e6173ab8fcea6e02f04352d43838dd">execute</a> (const To *A, const int lda, const To *B, const int ldb, Tr *C, const int ldc, const Tr alpha, const Tr beta, void *working_space) const override</td></tr>
140<tr class="separator:a51e6173ab8fcea6e02f04352d43838dd"><td class="memSeparator" colspan="2">&#160;</td></tr>
141<tr class="inherit_header pub_methods_class_gemm_common"><td colspan="2" onclick="javascript:toggleInherit('pub_methods_class_gemm_common')"><img src="closed.png" alt="-"/>&#160;Public Member Functions inherited from <a class="el" href="class_gemm_common.xhtml">GemmCommon&lt; To, Tr &gt;</a></td></tr>
142<tr class="memitem:a431c4e53fa05a1e8ba127441e8baeed2 inherit pub_methods_class_gemm_common"><td class="memItemLeft" align="right" valign="top">virtual&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="class_gemm_common.xhtml#a431c4e53fa05a1e8ba127441e8baeed2">~GemmCommon</a> ()</td></tr>
143<tr class="separator:a431c4e53fa05a1e8ba127441e8baeed2 inherit pub_methods_class_gemm_common"><td class="memSeparator" colspan="2">&#160;</td></tr>
144</table>
145<a name="details" id="details"></a><h2 class="groupheader">Detailed Description</h2>
Anthony Barbier8140e1e2017-12-14 23:48:46 +0000146<div class="textblock"><h3>template&lt;typename strategy, typename To, typename Tr&gt;<br />
Kaizen8938bd32017-09-28 14:38:23 +0100147class GemmInterleaved&lt; strategy, To, Tr &gt;</h3>
148
149
Anthony Barbier8140e1e2017-12-14 23:48:46 +0000150<p>Definition at line <a class="el" href="gemm__interleaved_8hpp_source.xhtml#l00044">44</a> of file <a class="el" href="gemm__interleaved_8hpp_source.xhtml">gemm_interleaved.hpp</a>.</p>
Kaizen8938bd32017-09-28 14:38:23 +0100151</div><h2 class="groupheader">Constructor &amp; Destructor Documentation</h2>
152<a class="anchor" id="ad4b554ff56ba355e66b70698b1393085"></a>
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154<div class="memproto">
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156 <tr>
157 <td class="mlabels-left">
158 <table class="memname">
159 <tr>
160 <td class="memname"><a class="el" href="class_gemm_interleaved.xhtml">GemmInterleaved</a> </td>
161 <td>(</td>
162 <td class="paramtype">const CPUInfo *&#160;</td>
163 <td class="paramname"><em>ci</em>, </td>
164 </tr>
165 <tr>
166 <td class="paramkey"></td>
167 <td></td>
168 <td class="paramtype">const unsigned int&#160;</td>
169 <td class="paramname"><em>M</em>, </td>
170 </tr>
171 <tr>
172 <td class="paramkey"></td>
173 <td></td>
174 <td class="paramtype">const unsigned int&#160;</td>
175 <td class="paramname"><em>N</em>, </td>
176 </tr>
177 <tr>
178 <td class="paramkey"></td>
179 <td></td>
180 <td class="paramtype">const unsigned int&#160;</td>
181 <td class="paramname"><em>K</em>, </td>
182 </tr>
183 <tr>
184 <td class="paramkey"></td>
185 <td></td>
186 <td class="paramtype">const bool&#160;</td>
187 <td class="paramname"><em>trA</em>, </td>
188 </tr>
189 <tr>
190 <td class="paramkey"></td>
191 <td></td>
192 <td class="paramtype">const bool&#160;</td>
193 <td class="paramname"><em>trB</em>&#160;</td>
194 </tr>
195 <tr>
196 <td></td>
197 <td>)</td>
198 <td></td><td></td>
199 </tr>
200 </table>
201 </td>
202 <td class="mlabels-right">
203<span class="mlabels"><span class="mlabel">inline</span></span> </td>
204 </tr>
205</table>
206</div><div class="memdoc">
207
Anthony Barbier8140e1e2017-12-14 23:48:46 +0000208<p>Definition at line <a class="el" href="gemm__interleaved_8hpp_source.xhtml#l00078">78</a> of file <a class="el" href="gemm__interleaved_8hpp_source.xhtml">gemm_interleaved.hpp</a>.</p>
209<div class="fragment"><div class="line"><a name="l00078"></a><span class="lineno"> 78</span>&#160; : M(M), N(N), K(K), trA(trA), trB(trB), strat(ci) {</div><div class="line"><a name="l00079"></a><span class="lineno"> 79</span>&#160; <span class="keyword">const</span> <span class="keywordtype">unsigned</span> <span class="keywordtype">int</span> L1_size = ci-&gt;L1_size;</div><div class="line"><a name="l00080"></a><span class="lineno"> 80</span>&#160; <span class="keyword">const</span> <span class="keywordtype">unsigned</span> <span class="keywordtype">int</span> L2_size = ci-&gt;L2_size;</div><div class="line"><a name="l00081"></a><span class="lineno"> 81</span>&#160;</div><div class="line"><a name="l00082"></a><span class="lineno"> 82</span>&#160; <span class="comment">// Work out blocking parameters</span></div><div class="line"><a name="l00083"></a><span class="lineno"> 83</span>&#160; <span class="comment">// k_block: Each iteration will consume (out_width + out_height)</span></div><div class="line"><a name="l00084"></a><span class="lineno"> 84</span>&#160; <span class="comment">// operands - so how many iterations will fill the L1?</span></div><div class="line"><a name="l00085"></a><span class="lineno"> 85</span>&#160; k_block = L1_size / (<span class="keyword">sizeof</span>(Toi) * (strat.out_width + strat.out_height));</div><div class="line"><a name="l00086"></a><span class="lineno"> 86</span>&#160;</div><div class="line"><a name="l00087"></a><span class="lineno"> 87</span>&#160; <span class="comment">// Needs to be a multiple of the K unroll level.</span></div><div class="line"><a name="l00088"></a><span class="lineno"> 88</span>&#160; k_block /= strat.k_unroll;</div><div class="line"><a name="l00089"></a><span class="lineno"> 89</span>&#160; k_block *= strat.k_unroll;</div><div class="line"><a name="l00090"></a><span class="lineno"> 90</span>&#160;</div><div class="line"><a name="l00091"></a><span class="lineno"> 91</span>&#160; <span class="comment">// Now tune to presented problem size; this is how many blocks we need.</span></div><div class="line"><a name="l00092"></a><span class="lineno"> 92</span>&#160; <span class="keywordtype">int</span> num_k_blocks = (K + (k_block - 1)) / k_block;</div><div class="line"><a name="l00093"></a><span class="lineno"> 93</span>&#160;</div><div class="line"><a name="l00094"></a><span class="lineno"> 94</span>&#160; <span class="comment">// So divide the space equally into that many blocks.</span></div><div class="line"><a name="l00095"></a><span class="lineno"> 95</span>&#160; k_block = (K + num_k_blocks - 1) / num_k_blocks;</div><div class="line"><a name="l00096"></a><span class="lineno"> 96</span>&#160;</div><div class="line"><a name="l00097"></a><span class="lineno"> 97</span>&#160; <span class="comment">// And round UP to the K unroll level required.</span></div><div class="line"><a name="l00098"></a><span class="lineno"> 98</span>&#160; k_block = (k_block + strat.k_unroll - 1) / strat.k_unroll;</div><div class="line"><a name="l00099"></a><span class="lineno"> 99</span>&#160; k_block *= strat.k_unroll;</div><div class="line"><a name="l00100"></a><span class="lineno"> 100</span>&#160;</div><div class="line"><a name="l00101"></a><span class="lineno"> 101</span>&#160; <span class="comment">// x_block: Work out how many rows (of length k_block) will fit in the L2</span></div><div class="line"><a name="l00102"></a><span class="lineno"> 102</span>&#160; x_block = L2_size / (<span class="keyword">sizeof</span>(Toi) * k_block);</div><div class="line"><a name="l00103"></a><span class="lineno"> 103</span>&#160;</div><div class="line"><a name="l00104"></a><span class="lineno"> 104</span>&#160; <span class="comment">// Needs to be a multiple of the kernel output width.</span></div><div class="line"><a name="l00105"></a><span class="lineno"> 105</span>&#160; x_block /= strat.out_width;</div><div class="line"><a name="l00106"></a><span class="lineno"> 106</span>&#160; x_block *= strat.out_width;</div><div class="line"><a name="l00107"></a><span class="lineno"> 107</span>&#160;</div><div class="line"><a name="l00108"></a><span class="lineno"> 108</span>&#160; <span class="comment">// And tune to the presented problem size.</span></div><div class="line"><a name="l00109"></a><span class="lineno"> 109</span>&#160; <span class="keywordtype">int</span> num_x_blocks = (N + (x_block - 1)) / x_block;</div><div class="line"><a name="l00110"></a><span class="lineno"> 110</span>&#160; x_block = (N + num_x_blocks - 1) / num_x_blocks;</div><div class="line"><a name="l00111"></a><span class="lineno"> 111</span>&#160;</div><div class="line"><a name="l00112"></a><span class="lineno"> 112</span>&#160; x_block = (x_block + strat.out_width - 1) / strat.out_width;</div><div class="line"><a name="l00113"></a><span class="lineno"> 113</span>&#160; x_block *= strat.out_width;</div><div class="line"><a name="l00114"></a><span class="lineno"> 114</span>&#160;</div><div class="line"><a name="l00115"></a><span class="lineno"> 115</span>&#160; <span class="comment">// Work out the rounded size of M - needed for some buffers.</span></div><div class="line"><a name="l00116"></a><span class="lineno"> 116</span>&#160; Mround = (M + (strat.out_height - 1)) / strat.out_height;</div><div class="line"><a name="l00117"></a><span class="lineno"> 117</span>&#160; Mround *= strat.out_height;</div><div class="line"><a name="l00118"></a><span class="lineno"> 118</span>&#160;</div><div class="line"><a name="l00119"></a><span class="lineno"> 119</span>&#160; }</div></div><!-- fragment -->
Kaizen8938bd32017-09-28 14:38:23 +0100210</div>
211</div>
212<h2 class="groupheader">Member Function Documentation</h2>
213<a class="anchor" id="a51e6173ab8fcea6e02f04352d43838dd"></a>
214<div class="memitem">
215<div class="memproto">
216<table class="mlabels">
217 <tr>
218 <td class="mlabels-left">
219 <table class="memname">
220 <tr>
221 <td class="memname">void execute </td>
222 <td>(</td>
223 <td class="paramtype">const To *&#160;</td>
224 <td class="paramname"><em>A</em>, </td>
225 </tr>
226 <tr>
227 <td class="paramkey"></td>
228 <td></td>
229 <td class="paramtype">const int&#160;</td>
230 <td class="paramname"><em>lda</em>, </td>
231 </tr>
232 <tr>
233 <td class="paramkey"></td>
234 <td></td>
235 <td class="paramtype">const To *&#160;</td>
236 <td class="paramname"><em>B</em>, </td>
237 </tr>
238 <tr>
239 <td class="paramkey"></td>
240 <td></td>
241 <td class="paramtype">const int&#160;</td>
242 <td class="paramname"><em>ldb</em>, </td>
243 </tr>
244 <tr>
245 <td class="paramkey"></td>
246 <td></td>
247 <td class="paramtype">Tr *&#160;</td>
248 <td class="paramname"><em>C</em>, </td>
249 </tr>
250 <tr>
251 <td class="paramkey"></td>
252 <td></td>
253 <td class="paramtype">const int&#160;</td>
254 <td class="paramname"><em>ldc</em>, </td>
255 </tr>
256 <tr>
257 <td class="paramkey"></td>
258 <td></td>
259 <td class="paramtype">const Tr&#160;</td>
260 <td class="paramname"><em>alpha</em>, </td>
261 </tr>
262 <tr>
263 <td class="paramkey"></td>
264 <td></td>
265 <td class="paramtype">const Tr&#160;</td>
266 <td class="paramname"><em>beta</em>, </td>
267 </tr>
268 <tr>
269 <td class="paramkey"></td>
270 <td></td>
271 <td class="paramtype">void *&#160;</td>
272 <td class="paramname"><em>working_space</em>&#160;</td>
273 </tr>
274 <tr>
275 <td></td>
276 <td>)</td>
277 <td></td><td> const</td>
278 </tr>
279 </table>
280 </td>
281 <td class="mlabels-right">
282<span class="mlabels"><span class="mlabel">inline</span><span class="mlabel">override</span><span class="mlabel">virtual</span></span> </td>
283 </tr>
284</table>
285</div><div class="memdoc">
286
Anthony Barbier8140e1e2017-12-14 23:48:46 +0000287<p>Implements <a class="el" href="class_gemm_common.xhtml#aab79882bbff1e62036bf9cb655e9c5d3">GemmCommon&lt; To, Tr &gt;</a>.</p>
Kaizen8938bd32017-09-28 14:38:23 +0100288
Anthony Barbier8140e1e2017-12-14 23:48:46 +0000289<p>Definition at line <a class="el" href="gemm__interleaved_8hpp_source.xhtml#l00122">122</a> of file <a class="el" href="gemm__interleaved_8hpp_source.xhtml">gemm_interleaved.hpp</a>.</p>
Kaizen8938bd32017-09-28 14:38:23 +0100290
Anthony Barbier8140e1e2017-12-14 23:48:46 +0000291<p>References <a class="el" href="profiler_8hpp_source.xhtml#l00100">PROFILE_KERNEL</a>, <a class="el" href="profiler_8hpp_source.xhtml#l00101">PROFILE_MERGE</a>, <a class="el" href="profiler_8hpp_source.xhtml#l00098">PROFILE_PREPA</a>, and <a class="el" href="profiler_8hpp_source.xhtml#l00099">PROFILE_PREPB</a>.</p>
292<div class="fragment"><div class="line"><a name="l00122"></a><span class="lineno"> 122</span>&#160; {</div><div class="line"><a name="l00123"></a><span class="lineno"> 123</span>&#160; assert(working_space);</div><div class="line"><a name="l00124"></a><span class="lineno"> 124</span>&#160; <a class="code" href="classprofiler.xhtml">profiler</a> prof;</div><div class="line"><a name="l00125"></a><span class="lineno"> 125</span>&#160; int8_t *working_space_bytes = <span class="keyword">reinterpret_cast&lt;</span>int8_t *<span class="keyword">&gt;</span>(working_space);</div><div class="line"><a name="l00126"></a><span class="lineno"> 126</span>&#160; intptr_t working_space_int = <span class="keyword">reinterpret_cast&lt;</span>intptr_t<span class="keyword">&gt;</span>(working_space_bytes);</div><div class="line"><a name="l00127"></a><span class="lineno"> 127</span>&#160; <span class="keywordtype">size_t</span> diff = 0;</div><div class="line"><a name="l00128"></a><span class="lineno"> 128</span>&#160;</div><div class="line"><a name="l00129"></a><span class="lineno"> 129</span>&#160; <span class="keywordflow">if</span> (working_space_int &amp; 0xF) {</div><div class="line"><a name="l00130"></a><span class="lineno"> 130</span>&#160; diff = 0x10 - (working_space_int &amp; 0xF);</div><div class="line"><a name="l00131"></a><span class="lineno"> 131</span>&#160; }</div><div class="line"><a name="l00132"></a><span class="lineno"> 132</span>&#160;</div><div class="line"><a name="l00133"></a><span class="lineno"> 133</span>&#160; Toi * <span class="keyword">const</span> a_panel = <span class="keyword">reinterpret_cast&lt;</span>Toi *<span class="keyword">&gt;</span>(working_space_bytes + diff);</div><div class="line"><a name="l00134"></a><span class="lineno"> 134</span>&#160; Toi * <span class="keyword">const</span> b_panel = <span class="keyword">reinterpret_cast&lt;</span>Toi *<span class="keyword">&gt;</span>(working_space_bytes + get_a_working_size() + diff);</div><div class="line"><a name="l00135"></a><span class="lineno"> 135</span>&#160; Tri * <span class="keyword">const</span> c_panel = <span class="keyword">reinterpret_cast&lt;</span>Tri *<span class="keyword">&gt;</span>(working_space_bytes + get_a_working_size() + get_b_working_size() + diff);</div><div class="line"><a name="l00136"></a><span class="lineno"> 136</span>&#160;</div><div class="line"><a name="l00137"></a><span class="lineno"> 137</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">unsigned</span> <span class="keywordtype">int</span> k0=0; k0&lt;K; k0 += k_block) {</div><div class="line"><a name="l00138"></a><span class="lineno"> 138</span>&#160; <span class="keywordtype">unsigned</span> <span class="keywordtype">int</span> kmax = k0 + k_block;</div><div class="line"><a name="l00139"></a><span class="lineno"> 139</span>&#160; <span class="keywordflow">if</span> (kmax &gt; K) kmax = K;</div><div class="line"><a name="l00140"></a><span class="lineno"> 140</span>&#160;</div><div class="line"><a name="l00141"></a><span class="lineno"> 141</span>&#160; <span class="comment">// Figure out how many &quot;K&quot; the kernel will actually process.</span></div><div class="line"><a name="l00142"></a><span class="lineno"> 142</span>&#160; <span class="keywordtype">int</span> kern_k = ((kmax - k0) + (strat.k_unroll - 1)) / strat.k_unroll;</div><div class="line"><a name="l00143"></a><span class="lineno"> 143</span>&#160; kern_k *= strat.k_unroll;</div><div class="line"><a name="l00144"></a><span class="lineno"> 144</span>&#160;</div><div class="line"><a name="l00145"></a><span class="lineno"> 145</span>&#160; prof(<a class="code" href="profiler_8hpp.xhtml#ac19bf2c5c388b9fb21cd0668475b2cf7">PROFILE_PREPA</a>, (M * (kmax-k0) * <span class="keyword">sizeof</span>(Toi)), [&amp;](void) {</div><div class="line"><a name="l00146"></a><span class="lineno"> 146</span>&#160; <span class="keywordflow">if</span> (trA ^ strategy::A_transpose) {</div><div class="line"><a name="l00147"></a><span class="lineno"> 147</span>&#160; Transform&lt;strategy::A_interleave, strategy::A_block, true&gt;(a_panel, <a class="code" href="namespacearm__compute.xhtml#a1ce9b523fd4f3b5bbcadcd796183455aa7fc56270e7a70fa81a5935b72eacbe29">A</a>, lda, 0, M, k0, kmax);</div><div class="line"><a name="l00148"></a><span class="lineno"> 148</span>&#160; } <span class="keywordflow">else</span> {</div><div class="line"><a name="l00149"></a><span class="lineno"> 149</span>&#160; Transform&lt;strategy::A_interleave, strategy::A_block, false&gt;(a_panel, <a class="code" href="namespacearm__compute.xhtml#a1ce9b523fd4f3b5bbcadcd796183455aa7fc56270e7a70fa81a5935b72eacbe29">A</a>, lda, 0, M, k0, kmax);</div><div class="line"><a name="l00150"></a><span class="lineno"> 150</span>&#160; }</div><div class="line"><a name="l00151"></a><span class="lineno"> 151</span>&#160; });</div><div class="line"><a name="l00152"></a><span class="lineno"> 152</span>&#160;</div><div class="line"><a name="l00153"></a><span class="lineno"> 153</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">unsigned</span> <span class="keywordtype">int</span> x0=0; x0&lt;N; x0 += x_block) {</div><div class="line"><a name="l00154"></a><span class="lineno"> 154</span>&#160; <span class="keywordtype">unsigned</span> <span class="keywordtype">int</span> xmax = x0 + x_block;</div><div class="line"><a name="l00155"></a><span class="lineno"> 155</span>&#160; <span class="keywordflow">if</span> (xmax &gt; N) xmax = N;</div><div class="line"><a name="l00156"></a><span class="lineno"> 156</span>&#160;</div><div class="line"><a name="l00157"></a><span class="lineno"> 157</span>&#160; <span class="keywordtype">int</span> bblocks = (xmax - x0 + strat.out_width - 1) / strat.out_width;</div><div class="line"><a name="l00158"></a><span class="lineno"> 158</span>&#160;</div><div class="line"><a name="l00159"></a><span class="lineno"> 159</span>&#160; prof(<a class="code" href="profiler_8hpp.xhtml#af0477dfaa86fc08825cb3f31212f423c">PROFILE_PREPB</a>, (xmax-x0) * (kmax-k0) * <span class="keyword">sizeof</span>(Toi), [&amp;](void) {</div><div class="line"><a name="l00160"></a><span class="lineno"> 160</span>&#160; <span class="keywordflow">if</span> (trB ^ strategy::B_transpose) {</div><div class="line"><a name="l00161"></a><span class="lineno"> 161</span>&#160; Transform&lt;strategy::B_interleave, strategy::B_block, true&gt;(b_panel, <a class="code" href="namespacearm__compute.xhtml#a1ce9b523fd4f3b5bbcadcd796183455aa9d5ed678fe57bcca610140957afab571">B</a>, ldb, x0, xmax, k0, kmax);</div><div class="line"><a name="l00162"></a><span class="lineno"> 162</span>&#160; } <span class="keywordflow">else</span> {</div><div class="line"><a name="l00163"></a><span class="lineno"> 163</span>&#160; Transform&lt;strategy::B_interleave, strategy::B_block, false&gt;(b_panel, <a class="code" href="namespacearm__compute.xhtml#a1ce9b523fd4f3b5bbcadcd796183455aa9d5ed678fe57bcca610140957afab571">B</a>, ldb, x0, xmax, k0, kmax);</div><div class="line"><a name="l00164"></a><span class="lineno"> 164</span>&#160; }</div><div class="line"><a name="l00165"></a><span class="lineno"> 165</span>&#160; });</div><div class="line"><a name="l00166"></a><span class="lineno"> 166</span>&#160;</div><div class="line"><a name="l00167"></a><span class="lineno"> 167</span>&#160; <span class="keywordflow">for</span> (<span class="keywordtype">unsigned</span> <span class="keywordtype">int</span> y=0; y&lt;M; y+=strat.out_height) {</div><div class="line"><a name="l00168"></a><span class="lineno"> 168</span>&#160; <span class="keywordtype">unsigned</span> <span class="keywordtype">int</span> ymax = y + strat.out_height;</div><div class="line"><a name="l00169"></a><span class="lineno"> 169</span>&#160; <span class="keywordflow">if</span> (ymax &gt; M) ymax = M;</div><div class="line"><a name="l00170"></a><span class="lineno"> 170</span>&#160;</div><div class="line"><a name="l00171"></a><span class="lineno"> 171</span>&#160; prof(<a class="code" href="profiler_8hpp.xhtml#a97f4e398174b5e094f5262e5d785ac20">PROFILE_KERNEL</a>, (strat.out_height * bblocks * strat.out_width * kern_k), [&amp;](<span class="keywordtype">void</span>) { strat.kernel(a_panel + (y * kern_k), b_panel, c_panel, 1, bblocks, kern_k); });</div><div class="line"><a name="l00172"></a><span class="lineno"> 172</span>&#160; prof(<a class="code" href="profiler_8hpp.xhtml#a2f7c3e65a9ccab509d7776832f562dd0">PROFILE_MERGE</a>, (strat.out_height * bblocks * strat.out_width * <span class="keyword">sizeof</span>(Tr)), [&amp;](<span class="keywordtype">void</span>) { MergeResults&lt;strategy::out_width, strategy::out_height&gt;(C, c_panel, ldc, y, ymax, x0, xmax, alpha, (k0==0 ? beta : static_cast&lt;Tr&gt;(1))); });</div><div class="line"><a name="l00173"></a><span class="lineno"> 173</span>&#160; }</div><div class="line"><a name="l00174"></a><span class="lineno"> 174</span>&#160; }</div><div class="line"><a name="l00175"></a><span class="lineno"> 175</span>&#160; }</div><div class="line"><a name="l00176"></a><span class="lineno"> 176</span>&#160; }</div><div class="ttc" id="namespacearm__compute_xhtml_a1ce9b523fd4f3b5bbcadcd796183455aa7fc56270e7a70fa81a5935b72eacbe29"><div class="ttname"><a href="namespacearm__compute.xhtml#a1ce9b523fd4f3b5bbcadcd796183455aa7fc56270e7a70fa81a5935b72eacbe29">arm_compute::Channel::A</a></div><div class="ttdoc">Alpha channel. </div></div>
293<div class="ttc" id="profiler_8hpp_xhtml_af0477dfaa86fc08825cb3f31212f423c"><div class="ttname"><a href="profiler_8hpp.xhtml#af0477dfaa86fc08825cb3f31212f423c">PROFILE_PREPB</a></div><div class="ttdeci">#define PROFILE_PREPB</div><div class="ttdef"><b>Definition:</b> <a href="profiler_8hpp_source.xhtml#l00099">profiler.hpp:99</a></div></div>
Kaizen8938bd32017-09-28 14:38:23 +0100294<div class="ttc" id="namespacearm__compute_xhtml_a1ce9b523fd4f3b5bbcadcd796183455aa9d5ed678fe57bcca610140957afab571"><div class="ttname"><a href="namespacearm__compute.xhtml#a1ce9b523fd4f3b5bbcadcd796183455aa9d5ed678fe57bcca610140957afab571">arm_compute::Channel::B</a></div><div class="ttdoc">Blue channel. </div></div>
Anthony Barbier8140e1e2017-12-14 23:48:46 +0000295<div class="ttc" id="profiler_8hpp_xhtml_a97f4e398174b5e094f5262e5d785ac20"><div class="ttname"><a href="profiler_8hpp.xhtml#a97f4e398174b5e094f5262e5d785ac20">PROFILE_KERNEL</a></div><div class="ttdeci">#define PROFILE_KERNEL</div><div class="ttdef"><b>Definition:</b> <a href="profiler_8hpp_source.xhtml#l00100">profiler.hpp:100</a></div></div>
296<div class="ttc" id="profiler_8hpp_xhtml_ac19bf2c5c388b9fb21cd0668475b2cf7"><div class="ttname"><a href="profiler_8hpp.xhtml#ac19bf2c5c388b9fb21cd0668475b2cf7">PROFILE_PREPA</a></div><div class="ttdeci">#define PROFILE_PREPA</div><div class="ttdef"><b>Definition:</b> <a href="profiler_8hpp_source.xhtml#l00098">profiler.hpp:98</a></div></div>
297<div class="ttc" id="classprofiler_xhtml"><div class="ttname"><a href="classprofiler.xhtml">profiler</a></div><div class="ttdef"><b>Definition:</b> <a href="profiler_8hpp_source.xhtml#l00088">profiler.hpp:88</a></div></div>
298<div class="ttc" id="profiler_8hpp_xhtml_a2f7c3e65a9ccab509d7776832f562dd0"><div class="ttname"><a href="profiler_8hpp.xhtml#a2f7c3e65a9ccab509d7776832f562dd0">PROFILE_MERGE</a></div><div class="ttdeci">#define PROFILE_MERGE</div><div class="ttdef"><b>Definition:</b> <a href="profiler_8hpp_source.xhtml#l00101">profiler.hpp:101</a></div></div>
Kaizen8938bd32017-09-28 14:38:23 +0100299</div><!-- fragment -->
300</div>
301</div>
302<a class="anchor" id="abf5a58f6feffeae31f48b750cba9303d"></a>
303<div class="memitem">
304<div class="memproto">
305<table class="mlabels">
306 <tr>
307 <td class="mlabels-left">
308 <table class="memname">
309 <tr>
310 <td class="memname">size_t get_working_size </td>
311 <td>(</td>
312 <td class="paramname"></td><td>)</td>
313 <td> const</td>
314 </tr>
315 </table>
316 </td>
317 <td class="mlabels-right">
318<span class="mlabels"><span class="mlabel">inline</span><span class="mlabel">override</span><span class="mlabel">virtual</span></span> </td>
319 </tr>
320</table>
321</div><div class="memdoc">
322
323<p>Implements <a class="el" href="class_gemm_common.xhtml#a190aa5a4547b7d8d8cbf7b7dc46ca32d">GemmCommon&lt; To, Tr &gt;</a>.</p>
324
Anthony Barbier8140e1e2017-12-14 23:48:46 +0000325<p>Definition at line <a class="el" href="gemm__interleaved_8hpp_source.xhtml#l00074">74</a> of file <a class="el" href="gemm__interleaved_8hpp_source.xhtml">gemm_interleaved.hpp</a>.</p>
326<div class="fragment"><div class="line"><a name="l00074"></a><span class="lineno"> 74</span>&#160; {</div><div class="line"><a name="l00075"></a><span class="lineno"> 75</span>&#160; <span class="keywordflow">return</span> get_a_working_size() + get_b_working_size() + get_c_working_size();</div><div class="line"><a name="l00076"></a><span class="lineno"> 76</span>&#160; }</div></div><!-- fragment -->
Kaizen8938bd32017-09-28 14:38:23 +0100327</div>
328</div>
329<hr/>The documentation for this class was generated from the following file:<ul>
330<li>arm_compute/core/NEON/kernels/assembly/<a class="el" href="gemm__interleaved_8hpp_source.xhtml">gemm_interleaved.hpp</a></li>
331</ul>
332</div><!-- contents -->
333</div><!-- doc-content -->
334<!-- start footer part -->
335<div id="nav-path" class="navpath"><!-- id is needed for treeview function! -->
336 <ul>
337 <li class="navelem"><a class="el" href="class_gemm_interleaved.xhtml">GemmInterleaved</a></li>
Anthony Barbier8140e1e2017-12-14 23:48:46 +0000338 <li class="footer">Generated on Thu Dec 14 2017 23:48:34 for Compute Library by
Kaizen8938bd32017-09-28 14:38:23 +0100339 <a href="http://www.doxygen.org/index.html">
Anthony Barbier8140e1e2017-12-14 23:48:46 +0000340 <img class="footer" src="doxygen.png" alt="doxygen"/></a> 1.8.11 </li>
Kaizen8938bd32017-09-28 14:38:23 +0100341 </ul>
342</div>
343</body>
344</html>