annotate src/coord.c @ 185:c7e5b8779bb5 include_mb_test

Move header files into include/mb/ subdirectory and remove symlink 'mb'.
author Thinker K.F. Li <thinker@branda.to>
date Tue, 04 Nov 2008 17:00:26 +0800
parents d11aa8fc06c7
children 530bb7728546
rev   line source
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1 /*! \brief Implement coordination tranform mechanism.
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2 * \file
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3 * This file implements coordination transforming for containers.
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4 */
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5 #include <stdio.h>
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6 #include <string.h>
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7 #include <math.h>
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8 #include "mb/mb_types.h"
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10
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11 #define ASSERT(x)
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13 /* To keep possibility of changing type of aix */
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14 #define MUL(a, b) ((a) * (b))
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15 #define ADD(a, b) ((a) + (b))
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16 #define DIV(a, b) ((a) / (b))
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17 #define SUB(a, b) ((a) - (b))
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18
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19 static void mul_matrix(co_aix *m1, co_aix *m2, co_aix *dst) {
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20 dst[0] = ADD(MUL(m1[0], m2[0]), MUL(m1[1], m2[3]));
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21 dst[1] = ADD(MUL(m1[0], m2[1]), MUL(m1[1], m2[4]));
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22 dst[2] = ADD(ADD(MUL(m1[0], m2[2]), MUL(m1[1], m2[5])), m1[2]);
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23 dst[3] = ADD(MUL(m1[3], m2[0]), MUL(m1[4], m2[3]));
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24 dst[4] = ADD(MUL(m1[3], m2[1]), MUL(m1[4], m2[4]));
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25 dst[5] = ADD(ADD(MUL(m1[3], m2[2]), MUL(m1[4], m2[5])), m1[5]);
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26 }
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27
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28 /*! \brief Compute agrregated transform function.
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29 *
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30 * Base on parent's aggregated matrix if it is existed, or use transform
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31 * matrix as aggregated matrix.
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32 */
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33 static void compute_transform_function(coord_t *visit) {
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34 if(visit->parent)
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35 mul_matrix(visit->parent->aggr_matrix,
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36 visit->matrix, visit->aggr_matrix);
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37 else
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38 memcpy(visit->aggr_matrix, visit->matrix, sizeof(visit->matrix));
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39 }
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40
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41 void compute_aggr_of_coord(coord_t *coord) {
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42 compute_transform_function(coord);
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43 }
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44
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45 /*! \brief Update aggregate matrices of elements under a sub-tree.
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46 *
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47 * A subtree is specified by the root of it. All elements in the subtree
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48 * are effected by that changes of matrix of the subtree root.
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49 */
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50 void update_aggr_matrix(coord_t *start) {
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51 coord_t *visit, *child, *next;
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52
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53 compute_transform_function(start);
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54
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55 visit = start;
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56 while(visit) {
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57 child = STAILQ_HEAD(visit->children);
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58 while(child) {
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59 compute_transform_function(child);
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60 child = STAILQ_NEXT(coord_t, sibling, child);
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61 }
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62
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63 if(STAILQ_HEAD(visit->children))
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64 visit = STAILQ_HEAD(visit->children);
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65 else if(STAILQ_NEXT(coord_t, sibling, visit))
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66 visit = STAILQ_NEXT(coord_t, sibling, visit);
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67 else {
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68 next = NULL;
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69 while(visit->parent && visit->parent != start) {
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70 visit = visit->parent;
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71 if(STAILQ_NEXT(coord_t, sibling, visit)) {
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72 next = STAILQ_NEXT(coord_t, sibling, visit);
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73 break;
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74 }
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75 }
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76 visit = next;
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77 }
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78 }
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79 }
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80
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81 /*! \brief Initialize a coord object.
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82 *
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83 * The object is cleared and matrix was initialized to ID.
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84 * The object is be a children of specified parent.
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85 */
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86 void coord_init(coord_t *co, coord_t *parent) {
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87 memset(co, 0, sizeof(coord_t));
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88 if(parent) {
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89 /* insert at tail of children list. */
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90 co->parent = parent;
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91 STAILQ_INS_TAIL(parent->children, coord_t, sibling, co);
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92 }
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93 co->matrix[0] = 1;
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94 co->matrix[4] = 1;
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95 co->aggr_matrix[0] = 1;
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96 co->aggr_matrix[4] = 1;
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97 co->cur_area = &co->areas[0];
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98 co->last_area = &co->areas[1];
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99 }
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100
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101 void coord_trans_pos(coord_t *co, co_aix *x, co_aix *y) {
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102 co_aix nx, ny;
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103
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104 nx = ADD(ADD(MUL(co->aggr_matrix[0], *x),
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105 MUL(co->aggr_matrix[1], *y)),
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106 co->aggr_matrix[2]);
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107 ny = ADD(ADD(MUL(co->aggr_matrix[3], *x),
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108 MUL(co->aggr_matrix[4], *y)),
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109 co->aggr_matrix[5]);
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110 *x = nx;
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111 *y = ny;
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112 }
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113
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114 co_aix coord_trans_size(coord_t *co, co_aix sz) {
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115 co_aix x, y;
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116
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117 x = MUL(co->aggr_matrix[0], sz);
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118 y = MUL(co->aggr_matrix[3], sz);
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119
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120 return sqrt(x * x + y * y);
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121 }
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122
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123 /*!
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124 * \note Coords, marked with COF_SKIP_TRIVAL (for temporary), and
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125 * descendants of them will not be trivaled and the flag with be removed
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126 * after skipping them.
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127 */
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128 coord_t *preorder_coord_subtree(coord_t *root, coord_t *last) {
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129 coord_t *next = NULL;
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130
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131 ASSERT(last != NULL);
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132
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133 if((!(last->flags & COF_SKIP_TRIVAL)) &&
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134 STAILQ_HEAD(last->children)) {
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135 next = STAILQ_HEAD(last->children);
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136 if(!(next->flags & COF_SKIP_TRIVAL))
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137 return next;
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138 } else {
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139 next = last;
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140 }
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141
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142 do {
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143 next->flags &= ~COF_SKIP_TRIVAL;
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144 while(next != root && STAILQ_NEXT(coord_t, sibling, next) == NULL)
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145 next = next->parent;
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146 if(next == root)
151
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147 return NULL;
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diff changeset
148 next = STAILQ_NEXT(coord_t, sibling, next);
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parents: 140
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149 } while(next->flags & COF_SKIP_TRIVAL);
12
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150
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151 return next;
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parents: 5
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152 }
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153
138
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parents: 31
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154 coord_t *postorder_coord_subtree(coord_t *root, coord_t *last) {
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155 coord_t *next;
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156
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157 if(root == last)
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158 return NULL;
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159
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160 if(last == NULL) {
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parents: 31
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161 /* Go most left leaf. */
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162 next = root;
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163 while(STAILQ_HEAD(next->children))
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164 next = STAILQ_HEAD(next->children);
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165 return next;
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parents: 31
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166 }
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167
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168 next = last;
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169 if(STAILQ_NEXT(coord_t, sibling, next) == NULL) /* most right */
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170 return next->parent;
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171
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172 /* Go most left leaf of right sibling sub-tree. */
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173 next = STAILQ_NEXT(coord_t, sibling, next);
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diff changeset
174 while(STAILQ_HEAD(next->children))
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diff changeset
175 next = STAILQ_HEAD(next->children);
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diff changeset
176
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177 return next;
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178 }
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179
1
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180 #ifdef UNITTEST
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181
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182 #include <CUnit/Basic.h>
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183
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184 void test_update_aggr_matrix(void) {
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185 coord_t elms[6];
2
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186 co_aix x, y;
1
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187
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188 coord_init(elms, NULL);
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189 coord_init(elms + 1, elms);
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190 coord_init(elms + 2, elms);
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191 coord_init(elms + 3, elms + 1);
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192 coord_init(elms + 4, elms + 1);
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193 coord_init(elms + 5, elms + 2);
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194
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195 /* | 2 -1 0 |
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196 * | 0 1 0 |
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197 * | 0 0 1 |
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198 */
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199 elms[0].matrix[0] = 2;
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200 elms[0].matrix[1] = -1;
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201
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202 /* | 1 3 0 |
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203 * | 5 1 0 |
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204 * | 0 0 1 |
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205 */
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206 elms[1].matrix[1] = 3;
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207 elms[1].matrix[3] = 5;
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208
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209 update_aggr_matrix(elms);
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210
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211 /* | -3 5 0 |
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212 * | 5 1 0 |
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213 * | 0 0 1 |
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214 */
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215 CU_ASSERT(elms[3].aggr_matrix[0] == -3);
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216 CU_ASSERT(elms[3].aggr_matrix[1] == 5);
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217 CU_ASSERT(elms[3].aggr_matrix[2] == 0);
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218 CU_ASSERT(elms[3].aggr_matrix[3] == 5);
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219 CU_ASSERT(elms[3].aggr_matrix[4] == 1);
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220 CU_ASSERT(elms[3].aggr_matrix[5] == 0);
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221
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222 CU_ASSERT(elms[4].aggr_matrix[0] == -3);
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223 CU_ASSERT(elms[4].aggr_matrix[1] == 5);
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224 CU_ASSERT(elms[4].aggr_matrix[2] == 0);
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225 CU_ASSERT(elms[4].aggr_matrix[3] == 5);
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226 CU_ASSERT(elms[4].aggr_matrix[4] == 1);
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227 CU_ASSERT(elms[4].aggr_matrix[5] == 0);
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228
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229 CU_ASSERT(elms[5].aggr_matrix[0] == 2);
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parents:
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230 CU_ASSERT(elms[5].aggr_matrix[1] == -1);
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parents:
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231 CU_ASSERT(elms[5].aggr_matrix[2] == 0);
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232 CU_ASSERT(elms[5].aggr_matrix[3] == 0);
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233 CU_ASSERT(elms[5].aggr_matrix[4] == 1);
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234 CU_ASSERT(elms[5].aggr_matrix[5] == 0);
2
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parents: 1
diff changeset
235
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diff changeset
236 x = 50;
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diff changeset
237 y = 99;
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parents: 1
diff changeset
238 coord_trans_pos(elms + 5, &x, &y);
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parents: 1
diff changeset
239 CU_ASSERT(x == 1);
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parents: 1
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240 CU_ASSERT(y == 99);
1
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241 }
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242
13
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parents: 12
diff changeset
243 void test_preorder_coord_subtree(void) {
12
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parents: 5
diff changeset
244 coord_t elms[6];
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parents: 5
diff changeset
245 coord_t *last;
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parents: 5
diff changeset
246
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247 coord_init(elms, NULL);
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parents: 5
diff changeset
248 coord_init(elms + 1, elms);
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parents: 5
diff changeset
249 coord_init(elms + 2, elms);
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parents: 5
diff changeset
250 coord_init(elms + 3, elms + 1);
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parents: 5
diff changeset
251 coord_init(elms + 4, elms + 1);
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parents: 5
diff changeset
252 coord_init(elms + 5, elms + 2);
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diff changeset
253
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parents: 5
diff changeset
254 last = elms;
13
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parents: 12
diff changeset
255 last = preorder_coord_subtree(elms, last);
12
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parents: 5
diff changeset
256 CU_ASSERT(last == elms + 1);
13
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parents: 12
diff changeset
257 last = preorder_coord_subtree(elms, last);
12
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diff changeset
258 CU_ASSERT(last == elms + 3);
13
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diff changeset
259 last = preorder_coord_subtree(elms, last);
12
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diff changeset
260 CU_ASSERT(last == elms + 4);
13
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diff changeset
261 last = preorder_coord_subtree(elms, last);
12
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diff changeset
262 CU_ASSERT(last == elms + 2);
13
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diff changeset
263 last = preorder_coord_subtree(elms, last);
12
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parents: 5
diff changeset
264 CU_ASSERT(last == elms + 5);
13
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diff changeset
265 last = preorder_coord_subtree(elms, last);
12
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diff changeset
266 CU_ASSERT(last == NULL);
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diff changeset
267 }
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diff changeset
268
1
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Thinker K.F. Li <thinker@branda.to>
parents:
diff changeset
269 CU_pSuite get_coord_suite(void) {
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Thinker K.F. Li <thinker@branda.to>
parents:
diff changeset
270 CU_pSuite suite;
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parents:
diff changeset
271
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parents:
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272 suite = CU_add_suite("Suite_coord", NULL, NULL);
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parents:
diff changeset
273 CU_ADD_TEST(suite, test_update_aggr_matrix);
13
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parents: 12
diff changeset
274 CU_ADD_TEST(suite, test_preorder_coord_subtree);
1
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275
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parents:
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276 return suite;
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parents:
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277 }
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parents:
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278
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279 #endif