1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318
|
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.01 Transitional//EN">
<html><head><meta http-equiv="Content-Type" content="text/html;charset=UTF-8">
<title>polylib: SolveDio.c Source File</title>
<link href="doxygen.css" rel="stylesheet" type="text/css">
<link href="tabs.css" rel="stylesheet" type="text/css">
</head><body>
<!-- Generated by Doxygen 1.5.6 -->
<div class="navigation" id="top">
<div class="tabs">
<ul>
<li><a href="main.html"><span>Main Page</span></a></li>
<li><a href="annotated.html"><span>Classes</span></a></li>
<li class="current"><a href="files.html"><span>Files</span></a></li>
</ul>
</div>
<h1>SolveDio.c</h1><a href="SolveDio_8c.html">Go to the documentation of this file.</a><div class="fragment"><pre class="fragment"><a name="l00001"></a>00001 <span class="preprocessor">#include <stdlib.h></span>
<a name="l00002"></a>00002 <span class="preprocessor">#include <<a class="code" href="polylib_8h.html">polylib/polylib.h</a>></span>
<a name="l00003"></a>00003
<a name="l00004"></a>00004 <span class="keyword">static</span> <span class="keywordtype">void</span> <a class="code" href="SolveDio_8c.html#43985b3ec6d9d36c531222181045b68f">RearrangeMatforSolveDio</a>(<a class="code" href="structmatrix.html">Matrix</a> *M);
<a name="l00005"></a>00005
<a name="l00006"></a>00006 <span class="comment">/*</span>
<a name="l00007"></a>00007 <span class="comment"> * Solve Diophantine Equations :</span>
<a name="l00008"></a>00008 <span class="comment"> * This function takes as input a system of equations in the form</span>
<a name="l00009"></a>00009 <span class="comment"> * Ax + C = 0 and finds the solution for it, if it exists</span>
<a name="l00010"></a>00010 <span class="comment"> * </span>
<a name="l00011"></a>00011 <span class="comment"> * Input : The matrix form the system of the equations Ax + C = 0</span>
<a name="l00012"></a>00012 <span class="comment"> * ( a pointer to a Matrix. )</span>
<a name="l00013"></a>00013 <span class="comment"> * A pointer to the pointer, where the matrix U </span>
<a name="l00014"></a>00014 <span class="comment"> * corresponding to the free variables of the equation</span>
<a name="l00015"></a>00015 <span class="comment"> * is stored.</span>
<a name="l00016"></a>00016 <span class="comment"> * A pointer to the pointer of a vector is a solution to T.</span>
<a name="l00017"></a>00017 <span class="comment"> *</span>
<a name="l00018"></a>00018 <span class="comment"> *</span>
<a name="l00019"></a>00019 <span class="comment"> * Output : The above matrix U and the vector T.</span>
<a name="l00020"></a>00020 <span class="comment"> *</span>
<a name="l00021"></a>00021 <span class="comment"> * Algorithm :</span>
<a name="l00022"></a>00022 <span class="comment"> * Given an integral matrix A, we can split it such that</span>
<a name="l00023"></a>00023 <span class="comment"> * A = HU, where H is in HNF (lowr triangular)</span>
<a name="l00024"></a>00024 <span class="comment"> * and U is unimodular.</span>
<a name="l00025"></a>00025 <span class="comment"> * So Ax = c -> HUx = c -> Ht = c ( where Ux = t).</span>
<a name="l00026"></a>00026 <span class="comment"> * Solving for Ht = c is easy.</span>
<a name="l00027"></a>00027 <span class="comment"> * Using 't' we find x = U(inverse) * t.</span>
<a name="l00028"></a>00028 <span class="comment"> * </span>
<a name="l00029"></a>00029 <span class="comment"> * Steps :</span>
<a name="l00030"></a>00030 <span class="comment"> * 1) For the above algorithm to work correctly to</span>
<a name="l00031"></a>00031 <span class="comment"> * need the condition that the first 'rank' rows are</span>
<a name="l00032"></a>00032 <span class="comment"> * the rows which contribute to the rank of the matrix.</span>
<a name="l00033"></a>00033 <span class="comment"> * So first we copy Input into a matrix 'A' and </span>
<a name="l00034"></a>00034 <span class="comment"> * rearrange the rows of A (if required) such that</span>
<a name="l00035"></a>00035 <span class="comment"> * the first rank rows contribute to the rank.</span>
<a name="l00036"></a>00036 <span class="comment"> * 2) Extract A and C from the matrix 'A'. A = n * l matrix.</span>
<a name="l00037"></a>00037 <span class="comment"> * 3) Find the Hermite normal form of the matrix A.</span>
<a name="l00038"></a>00038 <span class="comment"> * ( the matrices the lower tri. H and the unimod U).</span>
<a name="l00039"></a>00039 <span class="comment"> * 4) Using H, find the values of T one by one.</span>
<a name="l00040"></a>00040 <span class="comment"> * Here we use a sort of Gaussian elimination to find</span>
<a name="l00041"></a>00041 <span class="comment"> * the solution. You have a lower triangular matrix</span>
<a name="l00042"></a>00042 <span class="comment"> * and a vector, </span>
<a name="l00043"></a>00043 <span class="comment"> * [ [a11, 0], [a21, a22, 0] ...,[arank1...a rankrank 0]]</span>
<a name="l00044"></a>00044 <span class="comment"> * and the solution vector [t1.. tn] and the vector </span>
<a name="l00045"></a>00045 <span class="comment"> * [ c1, c2 .. cl], now as we are traversing down the</span>
<a name="l00046"></a>00046 <span class="comment"> * rows one by one, we will have all the information </span>
<a name="l00047"></a>00047 <span class="comment"> * needed to calculate the next 't'.</span>
<a name="l00048"></a>00048 <span class="comment"> * </span>
<a name="l00049"></a>00049 <span class="comment"> * That is to say, when you want to calculate t2, </span>
<a name="l00050"></a>00050 <span class="comment"> * you would have already calculated the value of t1</span>
<a name="l00051"></a>00051 <span class="comment"> * and similarly if you are calculating t3, you will </span>
<a name="l00052"></a>00052 <span class="comment"> * need t1 and t2 which will be available by that time.</span>
<a name="l00053"></a>00053 <span class="comment"> * So, we apply a sort of Gaussian Elimination inorder</span>
<a name="l00054"></a>00054 <span class="comment"> * to find the vector T.</span>
<a name="l00055"></a>00055 <span class="comment"> *</span>
<a name="l00056"></a>00056 <span class="comment"> * 5) After finding t_rank, the remaining (l-rank) t's are</span>
<a name="l00057"></a>00057 <span class="comment"> * made equal to zero, and we verify, if these values</span>
<a name="l00058"></a>00058 <span class="comment"> * agree with the remaining (n-rank) rows of A.</span>
<a name="l00059"></a>00059 <span class="comment"> *</span>
<a name="l00060"></a>00060 <span class="comment"> * 6) If a solution exists, find the values of X using </span>
<a name="l00061"></a>00061 <span class="comment"> * U (inverse) * T.</span>
<a name="l00062"></a>00062 <span class="comment"> */</span>
<a name="l00063"></a>00063
<a name="l00064"></a><a class="code" href="SolveDio_8h.html#0f417a4dacdd52103cc96cbe93e038cb">00064</a> <span class="keywordtype">int</span> <a class="code" href="SolveDio_8c.html#0f417a4dacdd52103cc96cbe93e038cb">SolveDiophantine</a>(<a class="code" href="structmatrix.html">Matrix</a> *M, <a class="code" href="structmatrix.html">Matrix</a> **U, <a class="code" href="structVector.html">Vector</a> **X) {
<a name="l00065"></a>00065
<a name="l00066"></a>00066 <span class="keywordtype">int</span> i, j, k1, k2, <a class="code" href="verif__ehrhart_8c.html#1c0ed9242a98f138b59c76f8454cfaa6">min</a>, rank;
<a name="l00067"></a>00067 <a class="code" href="structmatrix.html">Matrix</a> *A, *temp, *hermi, *unimod, *unimodinv ;
<a name="l00068"></a>00068 Value *C; <span class="comment">/* temp storage for the vector C */</span>
<a name="l00069"></a>00069 Value *T; <span class="comment">/* storage for the vector t */</span>
<a name="l00070"></a>00070 Value sum, tmp;
<a name="l00071"></a>00071
<a name="l00072"></a>00072 <span class="preprocessor">#ifdef DOMDEBUG</span>
<a name="l00073"></a>00073 <span class="preprocessor"></span> FILE *fp;
<a name="l00074"></a>00074 fp = fopen(<span class="stringliteral">"_debug"</span>, <span class="stringliteral">"a"</span>);
<a name="l00075"></a>00075 fprintf(fp,<span class="stringliteral">"\nEntered SOLVEDIOPHANTINE\n"</span>);
<a name="l00076"></a>00076 fclose(fp);
<a name="l00077"></a>00077 <span class="preprocessor">#endif</span>
<a name="l00078"></a>00078 <span class="preprocessor"></span>
<a name="l00079"></a>00079 <a class="code" href="source_2arith_2arithmetique_8h.html#f71a2ca0294a19cff0cdcbdcc052ee27">value_init</a>(sum); <a class="code" href="source_2arith_2arithmetique_8h.html#f71a2ca0294a19cff0cdcbdcc052ee27">value_init</a>(tmp);
<a name="l00080"></a>00080
<a name="l00081"></a>00081 <span class="comment">/* Ensuring that the first rank row of A contribute to the rank*/</span>
<a name="l00082"></a>00082 A = <a class="code" href="Matop_8c.html#9d027e9fc6b85e6fa37fc284bf1b5e06">Matrix_Copy</a>(M);
<a name="l00083"></a>00083 <a class="code" href="SolveDio_8c.html#43985b3ec6d9d36c531222181045b68f">RearrangeMatforSolveDio</a>(A);
<a name="l00084"></a>00084 temp = <a class="code" href="matrix_8c.html#c0b29e1d99a2823ad00b5f2157879d80">Matrix_Alloc</a>(A-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a>-1, A-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>-1);
<a name="l00085"></a>00085
<a name="l00086"></a>00086 <span class="comment">/* Copying A into temp, ignoring the Homogeneous part */</span>
<a name="l00087"></a>00087 <span class="keywordflow">for</span> (i = 0; i < A-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a> -1; i++)
<a name="l00088"></a>00088 <span class="keywordflow">for</span> (j = 0; j < A-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>-1; j++)
<a name="l00089"></a>00089 <a class="code" href="source_2arith_2arithmetique_8h.html#864613888dc46f15679aa4f63e468f89">value_assign</a>(temp-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][j],A-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][j]);
<a name="l00090"></a>00090
<a name="l00091"></a>00091 <span class="comment">/* Copying C into a temp, ignoring the Homogeneous part */</span>
<a name="l00092"></a>00092 C = (Value *) malloc (<span class="keyword">sizeof</span>(Value) * (A-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a>-1));
<a name="l00093"></a>00093 k1 = A-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a>-1;
<a name="l00094"></a>00094
<a name="l00095"></a>00095 <span class="keywordflow">for</span> (i = 0; i < k1; i++) {
<a name="l00096"></a>00096 <a class="code" href="source_2arith_2arithmetique_8h.html#f71a2ca0294a19cff0cdcbdcc052ee27">value_init</a>(C[i]);
<a name="l00097"></a>00097 <a class="code" href="source_2arith_2arithmetique_8h.html#0daf9a8ecdc14e7a274832b0d2add830">value_oppose</a>(C[i],A-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][A-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>-1]);
<a name="l00098"></a>00098 }
<a name="l00099"></a>00099 <a class="code" href="matrix_8c.html#fcb312b7c12a6997cd66964ecc34e1a6">Matrix_Free</a> (A);
<a name="l00100"></a>00100
<a name="l00101"></a>00101 <span class="comment">/* Finding the HNF of temp */</span>
<a name="l00102"></a>00102 <a class="code" href="NormalForms_8c.html#cd4e00bd353920b83e3f27a76909b2ed" title="Hermite : This function takes a Matrix as its input and finds its HNF ( Left form...">Hermite</a>(temp, &hermi, &unimod);
<a name="l00103"></a>00103
<a name="l00104"></a>00104 <span class="comment">/* Testing for existence of a Solution */</span>
<a name="l00105"></a>00105
<a name="l00106"></a>00106 min=(hermi-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a> <= hermi-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a> ) ? hermi-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a> : hermi-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a> ;
<a name="l00107"></a>00107 rank = 0;
<a name="l00108"></a>00108 for (i = 0; i < min ; i++) {
<a name="l00109"></a>00109 <span class="keywordflow">if</span> (<a class="code" href="source_2arith_2arithmetique_8h.html#47d32925340d2dc99ef2d4215080a60d">value_notzero_p</a>(hermi-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][i]))
<a name="l00110"></a>00110 rank ++;
<a name="l00111"></a>00111 <span class="keywordflow">else</span>
<a name="l00112"></a>00112 break ;
<a name="l00113"></a>00113 }
<a name="l00114"></a>00114
<a name="l00115"></a>00115 <span class="comment">/* Solving the Equation using Gaussian Elimination*/</span>
<a name="l00116"></a>00116
<a name="l00117"></a>00117 T = (Value *) malloc(<span class="keyword">sizeof</span>(Value) * temp-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>);
<a name="l00118"></a>00118 k2 = temp-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>;
<a name="l00119"></a>00119 <span class="keywordflow">for</span>(i=0;i< k2; i++)
<a name="l00120"></a>00120 <a class="code" href="source_2arith_2arithmetique_8h.html#f71a2ca0294a19cff0cdcbdcc052ee27">value_init</a>(T[i]);
<a name="l00121"></a>00121
<a name="l00122"></a>00122 <span class="keywordflow">for</span> (i = 0; i < rank ; i++) {
<a name="l00123"></a>00123 <a class="code" href="source_2arith_2arithmetique_8h.html#8cc56567a4a29271559ac0fd5f6c5bfa">value_set_si</a>(sum,0);
<a name="l00124"></a>00124 <span class="keywordflow">for</span> (j = 0; j < i; j++) {
<a name="l00125"></a>00125 <a class="code" href="source_2arith_2arithmetique_8h.html#9900fbd029b36f5887e587642a064a52">value_addmul</a>(sum, T[j], hermi-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][j]);
<a name="l00126"></a>00126 }
<a name="l00127"></a>00127 <a class="code" href="source_2arith_2arithmetique_8h.html#e92a58eee3b6f5c6a99e6837e68407e1">value_subtract</a>(tmp,C[i],sum);
<a name="l00128"></a>00128 <a class="code" href="source_2arith_2arithmetique_8h.html#e77f928488d756f77270649775dbdc1d">value_modulus</a>(tmp,tmp,hermi-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][i]);
<a name="l00129"></a>00129 <span class="keywordflow">if</span> (<a class="code" href="source_2arith_2arithmetique_8h.html#47d32925340d2dc99ef2d4215080a60d">value_notzero_p</a>(tmp)) { <span class="comment">/* no solution to the equation */</span>
<a name="l00130"></a>00130 *U = <a class="code" href="matrix_8c.html#c0b29e1d99a2823ad00b5f2157879d80">Matrix_Alloc</a>(0,0);
<a name="l00131"></a>00131 *X = <a class="code" href="vector_8c.html#358c545236f58b1001479e4a69d318aa">Vector_Alloc</a> (0);
<a name="l00132"></a>00132 <a class="code" href="source_2arith_2arithmetique_8h.html#b9b282921e85a0527d462d331533d619">value_clear</a>(sum); <a class="code" href="source_2arith_2arithmetique_8h.html#b9b282921e85a0527d462d331533d619">value_clear</a>(tmp);
<a name="l00133"></a>00133 <span class="keywordflow">for</span> (i = 0; i < k1; i++)
<a name="l00134"></a>00134 <a class="code" href="source_2arith_2arithmetique_8h.html#b9b282921e85a0527d462d331533d619">value_clear</a>(C[i]);
<a name="l00135"></a>00135 <span class="keywordflow">for</span> (i = 0; i < k2; i++)
<a name="l00136"></a>00136 <a class="code" href="source_2arith_2arithmetique_8h.html#b9b282921e85a0527d462d331533d619">value_clear</a>(T[i]);
<a name="l00137"></a>00137 free(C);
<a name="l00138"></a>00138 free(T);
<a name="l00139"></a>00139 <span class="keywordflow">return</span> (-1);
<a name="l00140"></a>00140 };
<a name="l00141"></a>00141 <a class="code" href="source_2arith_2arithmetique_8h.html#e92a58eee3b6f5c6a99e6837e68407e1">value_subtract</a>(tmp,C[i],sum);
<a name="l00142"></a>00142 <a class="code" href="source_2arith_2arithmetique_8h.html#c633e4bcd9ed1d8412c67cda6d8ddb11">value_division</a>(T[i],tmp,hermi-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][i]);
<a name="l00143"></a>00143 }
<a name="l00144"></a>00144 <span class="comment"></span>
<a name="l00145"></a>00145 <span class="comment"> /** Case when rank < Number of Columns; **/</span>
<a name="l00146"></a>00146
<a name="l00147"></a>00147 <span class="keywordflow">for</span> (i = rank; i < hermi-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>; i++)
<a name="l00148"></a>00148 <a class="code" href="source_2arith_2arithmetique_8h.html#8cc56567a4a29271559ac0fd5f6c5bfa">value_set_si</a>(T[i],0);
<a name="l00149"></a>00149 <span class="comment"></span>
<a name="l00150"></a>00150 <span class="comment"> /** Solved the equtions **/</span><span class="comment"></span>
<a name="l00151"></a>00151 <span class="comment"> /** When rank < hermi->NbRows; Verifying whether the solution agrees </span>
<a name="l00152"></a>00152 <span class="comment"> with the remaining n-rank rows as well. **/</span>
<a name="l00153"></a>00153
<a name="l00154"></a>00154 <span class="keywordflow">for</span> (i = rank; i < hermi-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a>; i++) {
<a name="l00155"></a>00155 <a class="code" href="source_2arith_2arithmetique_8h.html#8cc56567a4a29271559ac0fd5f6c5bfa">value_set_si</a>(sum,0);
<a name="l00156"></a>00156 <span class="keywordflow">for</span> (j = 0; j < hermi-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>; j++) {
<a name="l00157"></a>00157 <a class="code" href="source_2arith_2arithmetique_8h.html#9900fbd029b36f5887e587642a064a52">value_addmul</a>(sum, T[j], hermi-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][j]);
<a name="l00158"></a>00158 }
<a name="l00159"></a>00159 <span class="keywordflow">if</span> (<a class="code" href="source_2arith_2arithmetique_8h.html#8092395b58522bbac9f2c8a1ee14c10c">value_ne</a>(sum,C[i])) {
<a name="l00160"></a>00160 *U = <a class="code" href="matrix_8c.html#c0b29e1d99a2823ad00b5f2157879d80">Matrix_Alloc</a>(0,0);
<a name="l00161"></a>00161 *X = <a class="code" href="vector_8c.html#358c545236f58b1001479e4a69d318aa">Vector_Alloc</a> (0);
<a name="l00162"></a>00162 <a class="code" href="source_2arith_2arithmetique_8h.html#b9b282921e85a0527d462d331533d619">value_clear</a>(sum); <a class="code" href="source_2arith_2arithmetique_8h.html#b9b282921e85a0527d462d331533d619">value_clear</a>(tmp);
<a name="l00163"></a>00163 <span class="keywordflow">for</span> (i = 0; i < k1; i++)
<a name="l00164"></a>00164 <a class="code" href="source_2arith_2arithmetique_8h.html#b9b282921e85a0527d462d331533d619">value_clear</a>(C[i]);
<a name="l00165"></a>00165 <span class="keywordflow">for</span> (i = 0; i < k2; i++)
<a name="l00166"></a>00166 <a class="code" href="source_2arith_2arithmetique_8h.html#b9b282921e85a0527d462d331533d619">value_clear</a>(T[i]);
<a name="l00167"></a>00167 free(C);
<a name="l00168"></a>00168 free(T);
<a name="l00169"></a>00169 <span class="keywordflow">return</span> (-1);
<a name="l00170"></a>00170 }
<a name="l00171"></a>00171 }
<a name="l00172"></a>00172 unimodinv = <a class="code" href="matrix_8c.html#c0b29e1d99a2823ad00b5f2157879d80">Matrix_Alloc</a>(unimod-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a>, unimod-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>);
<a name="l00173"></a>00173 <a class="code" href="matrix_8c.html#97aa755c011357ce2146d71ddb88ded6">Matrix_Inverse</a>(unimod, unimodinv);
<a name="l00174"></a>00174 <a class="code" href="matrix_8c.html#fcb312b7c12a6997cd66964ecc34e1a6">Matrix_Free</a>(unimod);
<a name="l00175"></a>00175 *X = <a class="code" href="vector_8c.html#358c545236f58b1001479e4a69d318aa">Vector_Alloc</a>(M-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>-1);
<a name="l00176"></a>00176
<a name="l00177"></a>00177 <span class="keywordflow">if</span> (rank == hermi-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>)
<a name="l00178"></a>00178 *U = <a class="code" href="matrix_8c.html#c0b29e1d99a2823ad00b5f2157879d80">Matrix_Alloc</a>(0,0);
<a name="l00179"></a>00179 <span class="keywordflow">else</span> { <span class="comment">/* Extracting the General solution form U(inverse) */</span>
<a name="l00180"></a>00180
<a name="l00181"></a>00181 *U = <a class="code" href="matrix_8c.html#c0b29e1d99a2823ad00b5f2157879d80">Matrix_Alloc</a>(hermi-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>, hermi-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>-rank);
<a name="l00182"></a>00182 <span class="keywordflow">for</span> (i = 0; i < U[0]-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a>; i++)
<a name="l00183"></a>00183 <span class="keywordflow">for</span> (j = 0; j < U[0]-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>; j++)
<a name="l00184"></a>00184 <a class="code" href="source_2arith_2arithmetique_8h.html#864613888dc46f15679aa4f63e468f89">value_assign</a>(U[0]-><a class="code" href="vector_8c.html#a45b2e3dcf291527c5aedc420819adfc">p</a>[i][j],unimodinv-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][j+rank]);
<a name="l00185"></a>00185 }
<a name="l00186"></a>00186
<a name="l00187"></a>00187 <span class="keywordflow">for</span> (i = 0; i < unimodinv-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a>; i++) {
<a name="l00188"></a>00188
<a name="l00189"></a>00189 <span class="comment">/* Calculating the vector X = Uinv * T */</span>
<a name="l00190"></a>00190 <a class="code" href="source_2arith_2arithmetique_8h.html#8cc56567a4a29271559ac0fd5f6c5bfa">value_set_si</a>(sum,0);
<a name="l00191"></a>00191 <span class="keywordflow">for</span> (j = 0; j < unimodinv-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>; j++) {
<a name="l00192"></a>00192 <a class="code" href="source_2arith_2arithmetique_8h.html#9900fbd029b36f5887e587642a064a52">value_addmul</a>(sum, unimodinv-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][j], T[j]);
<a name="l00193"></a>00193 }
<a name="l00194"></a>00194 <a class="code" href="source_2arith_2arithmetique_8h.html#864613888dc46f15679aa4f63e468f89">value_assign</a>(X[0]-><a class="code" href="vector_8c.html#a45b2e3dcf291527c5aedc420819adfc">p</a>[i],sum);
<a name="l00195"></a>00195 }
<a name="l00196"></a>00196
<a name="l00197"></a>00197 <span class="comment">/*</span>
<a name="l00198"></a>00198 <span class="comment"> for (i = rank; i < A->NbColumns; i ++)</span>
<a name="l00199"></a>00199 <span class="comment"> X[0]->p[i] = 0;</span>
<a name="l00200"></a>00200 <span class="comment"> */</span>
<a name="l00201"></a>00201 <a class="code" href="matrix_8c.html#fcb312b7c12a6997cd66964ecc34e1a6">Matrix_Free</a> (unimodinv);
<a name="l00202"></a>00202 <a class="code" href="matrix_8c.html#fcb312b7c12a6997cd66964ecc34e1a6">Matrix_Free</a> (hermi);
<a name="l00203"></a>00203 <a class="code" href="matrix_8c.html#fcb312b7c12a6997cd66964ecc34e1a6">Matrix_Free</a> (temp);
<a name="l00204"></a>00204 <a class="code" href="source_2arith_2arithmetique_8h.html#b9b282921e85a0527d462d331533d619">value_clear</a>(sum); <a class="code" href="source_2arith_2arithmetique_8h.html#b9b282921e85a0527d462d331533d619">value_clear</a>(tmp);
<a name="l00205"></a>00205 <span class="keywordflow">for</span> (i = 0; i < k1; i++)
<a name="l00206"></a>00206 <a class="code" href="source_2arith_2arithmetique_8h.html#b9b282921e85a0527d462d331533d619">value_clear</a>(C[i]);
<a name="l00207"></a>00207 <span class="keywordflow">for</span> (i = 0; i < k2; i++)
<a name="l00208"></a>00208 <a class="code" href="source_2arith_2arithmetique_8h.html#b9b282921e85a0527d462d331533d619">value_clear</a>(T[i]);
<a name="l00209"></a>00209 free(C);
<a name="l00210"></a>00210 free(T);
<a name="l00211"></a>00211 <span class="keywordflow">return</span> (rank);
<a name="l00212"></a>00212 } <span class="comment">/* SolveDiophantine */</span>
<a name="l00213"></a>00213
<a name="l00214"></a>00214 <span class="comment">/*</span>
<a name="l00215"></a>00215 <span class="comment"> * Rearrange :</span>
<a name="l00216"></a>00216 <span class="comment"> * This function takes as input a matrix M (pointer to it)</span>
<a name="l00217"></a>00217 <span class="comment"> * and it returns the tranformed matrix M, such that the first</span>
<a name="l00218"></a>00218 <span class="comment"> * 'rank' rows of the new matrix M are the ones which contribute</span>
<a name="l00219"></a>00219 <span class="comment"> * to the rank of the matrix M. </span>
<a name="l00220"></a>00220 <span class="comment"> * </span>
<a name="l00221"></a>00221 <span class="comment"> * 1) For a start we try to put all the zero rows at the end.</span>
<a name="l00222"></a>00222 <span class="comment"> * 2) Then cur = 1st row of the remaining matrix.</span>
<a name="l00223"></a>00223 <span class="comment"> * 3) nextrow = 2ndrow of M.</span>
<a name="l00224"></a>00224 <span class="comment"> * 4) temp = cur + nextrow</span>
<a name="l00225"></a>00225 <span class="comment"> * 5) If (rank(temp) == temp->NbRows.) {cur = temp;nextrow ++}</span>
<a name="l00226"></a>00226 <span class="comment"> * 6) Else (Exchange the nextrow of M with the currentlastrow.</span>
<a name="l00227"></a>00227 <span class="comment"> * and currentlastrow --).</span>
<a name="l00228"></a>00228 <span class="comment"> * 7) Repeat steps 4,5,6 till it is no longer possible.</span>
<a name="l00229"></a>00229 <span class="comment"> * </span>
<a name="l00230"></a>00230 <span class="comment"> */</span>
<a name="l00231"></a><a class="code" href="SolveDio_8c.html#43985b3ec6d9d36c531222181045b68f">00231</a> <span class="keyword">static</span> <span class="keywordtype">void</span> <a class="code" href="SolveDio_8c.html#43985b3ec6d9d36c531222181045b68f">RearrangeMatforSolveDio</a>(<a class="code" href="structmatrix.html">Matrix</a> *M) {
<a name="l00232"></a>00232
<a name="l00233"></a>00233 <span class="keywordtype">int</span> i, j, curend, curRow, <a class="code" href="verif__ehrhart_8c.html#1c0ed9242a98f138b59c76f8454cfaa6">min</a>, rank=1;
<a name="l00234"></a>00234 <a class="code" href="types_8h.html#39db6982619d623273fad8a383489309">Bool</a> <span class="keyword">add</span> = <a class="code" href="types_8h.html#39db6982619d623273fad8a3834893096d32c34708a0a3507c4bdb89219d650b">True</a>;
<a name="l00235"></a>00235 <a class="code" href="structmatrix.html">Matrix</a> *A, *L, *H, *U;
<a name="l00236"></a>00236
<a name="l00237"></a>00237 <span class="comment">/* Though I could have used the Lattice function</span>
<a name="l00238"></a>00238 <span class="comment"> Extract Linear Part, I chose not to use it so that</span>
<a name="l00239"></a>00239 <span class="comment"> this function can be independent of Lattice Operations */</span>
<a name="l00240"></a>00240
<a name="l00241"></a>00241 L = <a class="code" href="matrix_8c.html#c0b29e1d99a2823ad00b5f2157879d80">Matrix_Alloc</a>(M-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a>-1,M-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>-1);
<a name="l00242"></a>00242 <span class="keywordflow">for</span> (i = 0; i < L-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a>; i++)
<a name="l00243"></a>00243 <span class="keywordflow">for</span> (j = 0; j < L-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>; j++)
<a name="l00244"></a>00244 <a class="code" href="source_2arith_2arithmetique_8h.html#864613888dc46f15679aa4f63e468f89">value_assign</a>(L-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][j],M-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][j]);
<a name="l00245"></a>00245
<a name="l00246"></a>00246 <span class="comment">/* Putting the zero rows at the end */</span>
<a name="l00247"></a>00247 curend = L-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a>-1;
<a name="l00248"></a>00248 <span class="keywordflow">for</span> (i = 0; i < curend; i++) {
<a name="l00249"></a>00249 <span class="keywordflow">for</span> (j = 0; j < L-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>; j++)
<a name="l00250"></a>00250 <span class="keywordflow">if</span> (<a class="code" href="source_2arith_2arithmetique_8h.html#47d32925340d2dc99ef2d4215080a60d">value_notzero_p</a>(L-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][j]))
<a name="l00251"></a>00251 <span class="keywordflow">break</span>;
<a name="l00252"></a>00252 <span class="keywordflow">if</span> (j == L-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>) {
<a name="l00253"></a>00253 <a class="code" href="Matop_8c.html#cf8ce28d22ae1fabdf97ac6c4e86341a">ExchangeRows</a>(M,i,curend);
<a name="l00254"></a>00254 curend --;
<a name="l00255"></a>00255 }
<a name="l00256"></a>00256 }
<a name="l00257"></a>00257
<a name="l00258"></a>00258 <span class="comment">/* Trying to put the redundant rows at the end */</span>
<a name="l00259"></a>00259
<a name="l00260"></a>00260 <span class="keywordflow">if</span> (curend > 0) { <span class="comment">/* there are some useful rows */</span>
<a name="l00261"></a>00261
<a name="l00262"></a>00262 <a class="code" href="structmatrix.html">Matrix</a> *temp;
<a name="l00263"></a>00263 A = <a class="code" href="matrix_8c.html#c0b29e1d99a2823ad00b5f2157879d80">Matrix_Alloc</a>(1, L-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>);
<a name="l00264"></a>00264
<a name="l00265"></a>00265 <span class="keywordflow">for</span> (i = 0; i <L-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>; i++)
<a name="l00266"></a>00266 <a class="code" href="source_2arith_2arithmetique_8h.html#864613888dc46f15679aa4f63e468f89">value_assign</a>(A-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[0][i],L-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[0][i]);
<a name="l00267"></a>00267 curRow = 1;
<a name="l00268"></a>00268 <span class="keywordflow">while</span> (<span class="keyword">add</span> == <a class="code" href="types_8h.html#39db6982619d623273fad8a3834893096d32c34708a0a3507c4bdb89219d650b">True</a> ) {
<a name="l00269"></a>00269 temp= <a class="code" href="Matop_8c.html#76461087aa1a40441a3dc174e8359b97">AddANullRow</a>(A);
<a name="l00270"></a>00270 <span class="keywordflow">for</span> (i = 0;i <A-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>; i++)
<a name="l00271"></a>00271 <a class="code" href="source_2arith_2arithmetique_8h.html#864613888dc46f15679aa4f63e468f89">value_assign</a>(temp-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[curRow][i],L-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[curRow][i]);
<a name="l00272"></a>00272 <a class="code" href="NormalForms_8c.html#cd4e00bd353920b83e3f27a76909b2ed" title="Hermite : This function takes a Matrix as its input and finds its HNF ( Left form...">Hermite</a>(temp, &H, &U);
<a name="l00273"></a>00273 <span class="keywordflow">for</span> (i = 0; i < H-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a>; i++)
<a name="l00274"></a>00274 <span class="keywordflow">if</span> (<a class="code" href="source_2arith_2arithmetique_8h.html#827532f2140ae2aa96e46baebae09723">value_zero_p</a>(H-><a class="code" href="structmatrix.html#2c6d840d8d911ae95c2ae4fc96f4b5ba">p</a>[i][i]))
<a name="l00275"></a>00275 <span class="keywordflow">break</span>;
<a name="l00276"></a>00276 <span class="keywordflow">if</span> (i != H-><a class="code" href="structmatrix.html#16ad614d15c6e81c0041e877b623c72d">NbRows</a>) {
<a name="l00277"></a>00277 <a class="code" href="Matop_8c.html#cf8ce28d22ae1fabdf97ac6c4e86341a">ExchangeRows</a>(M, curRow, curend);
<a name="l00278"></a>00278 curend --;
<a name="l00279"></a>00279 }
<a name="l00280"></a>00280 <span class="keywordflow">else</span> {
<a name="l00281"></a>00281 curRow ++;
<a name="l00282"></a>00282 rank ++;
<a name="l00283"></a>00283 <a class="code" href="matrix_8c.html#fcb312b7c12a6997cd66964ecc34e1a6">Matrix_Free</a> (A);
<a name="l00284"></a>00284 A = <a class="code" href="Matop_8c.html#9d027e9fc6b85e6fa37fc284bf1b5e06">Matrix_Copy</a> (temp);
<a name="l00285"></a>00285 <a class="code" href="matrix_8c.html#fcb312b7c12a6997cd66964ecc34e1a6">Matrix_Free</a> (temp);
<a name="l00286"></a>00286 }
<a name="l00287"></a>00287 <a class="code" href="matrix_8c.html#fcb312b7c12a6997cd66964ecc34e1a6">Matrix_Free</a> (H);
<a name="l00288"></a>00288 <a class="code" href="matrix_8c.html#fcb312b7c12a6997cd66964ecc34e1a6">Matrix_Free</a> (U);
<a name="l00289"></a>00289 min = (curend >= L-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a>) ? L-><a class="code" href="structmatrix.html#68858fd3b57684ef38bdfce13c65d182">NbColumns</a> : curend ;
<a name="l00290"></a>00290 if (rank==min || curRow >= curend)
<a name="l00291"></a>00291 <span class="keywordflow">break</span>;
<a name="l00292"></a>00292 }
<a name="l00293"></a>00293 <a class="code" href="matrix_8c.html#fcb312b7c12a6997cd66964ecc34e1a6">Matrix_Free</a> (A);
<a name="l00294"></a>00294 }
<a name="l00295"></a>00295 <a class="code" href="matrix_8c.html#fcb312b7c12a6997cd66964ecc34e1a6">Matrix_Free</a> (L);
<a name="l00296"></a>00296 <span class="keywordflow">return</span>;
<a name="l00297"></a>00297 } <span class="comment">/* RearrangeMatforSolveDio */</span>
</pre></div></div>
<hr size="1"><address style="text-align: right;"><small>Generated on Tue Sep 15 18:34:00 2009 for polylib by
<a href="http://www.doxygen.org/index.html">
<img src="doxygen.png" alt="doxygen" align="middle" border="0"></a> 1.5.6 </small></address>
</body>
</html>
|