IDLinearMathInterface.hpp 4.5 KB

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  1. #ifndef IDLINEARMATHINTERFACE_HPP_
  2. #define IDLINEARMATHINTERFACE_HPP_
  3. #include <cstdlib>
  4. #include "../IDConfig.hpp"
  5. #include "../../LinearMath/btMatrix3x3.h"
  6. #include "../../LinearMath/btVector3.h"
  7. #include "../../LinearMath/btMatrixX.h"
  8. #define BT_ID_HAVE_MAT3X
  9. namespace btInverseDynamics {
  10. class vec3;
  11. class vecx;
  12. class mat33;
  13. typedef btMatrixX<idScalar> matxx;
  14. class vec3 : public btVector3 {
  15. public:
  16. vec3() : btVector3() {}
  17. vec3(const btVector3& btv) { *this = btv; }
  18. idScalar& operator()(int i) { return (*this)[i]; }
  19. const idScalar& operator()(int i) const { return (*this)[i]; }
  20. int size() const { return 3; }
  21. const vec3& operator=(const btVector3& rhs) {
  22. *static_cast<btVector3*>(this) = rhs;
  23. return *this;
  24. }
  25. };
  26. class mat33 : public btMatrix3x3 {
  27. public:
  28. mat33() : btMatrix3x3() {}
  29. mat33(const btMatrix3x3& btm) { *this = btm; }
  30. idScalar& operator()(int i, int j) { return (*this)[i][j]; }
  31. const idScalar& operator()(int i, int j) const { return (*this)[i][j]; }
  32. const mat33& operator=(const btMatrix3x3& rhs) {
  33. *static_cast<btMatrix3x3*>(this) = rhs;
  34. return *this;
  35. }
  36. friend mat33 operator*(const idScalar& s, const mat33& a);
  37. friend mat33 operator/(const mat33& a, const idScalar& s);
  38. };
  39. inline mat33 operator/(const mat33& a, const idScalar& s) { return a * (1.0 / s); }
  40. inline mat33 operator*(const idScalar& s, const mat33& a) { return a * s; }
  41. class vecx : public btVectorX<idScalar> {
  42. public:
  43. vecx(int size) : btVectorX<idScalar>(size) {}
  44. const vecx& operator=(const btVectorX<idScalar>& rhs) {
  45. *static_cast<btVectorX<idScalar>*>(this) = rhs;
  46. return *this;
  47. }
  48. idScalar& operator()(int i) { return (*this)[i]; }
  49. const idScalar& operator()(int i) const { return (*this)[i]; }
  50. friend vecx operator*(const vecx& a, const idScalar& s);
  51. friend vecx operator*(const idScalar& s, const vecx& a);
  52. friend vecx operator+(const vecx& a, const vecx& b);
  53. friend vecx operator-(const vecx& a, const vecx& b);
  54. friend vecx operator/(const vecx& a, const idScalar& s);
  55. };
  56. inline vecx operator*(const vecx& a, const idScalar& s) {
  57. vecx result(a.size());
  58. for (int i = 0; i < result.size(); i++) {
  59. result(i) = a(i) * s;
  60. }
  61. return result;
  62. }
  63. inline vecx operator*(const idScalar& s, const vecx& a) { return a * s; }
  64. inline vecx operator+(const vecx& a, const vecx& b) {
  65. vecx result(a.size());
  66. // TODO: error handling for a.size() != b.size()??
  67. if (a.size() != b.size()) {
  68. bt_id_error_message("size missmatch. a.size()= %d, b.size()= %d\n", a.size(), b.size());
  69. abort();
  70. }
  71. for (int i = 0; i < a.size(); i++) {
  72. result(i) = a(i) + b(i);
  73. }
  74. return result;
  75. }
  76. inline vecx operator-(const vecx& a, const vecx& b) {
  77. vecx result(a.size());
  78. // TODO: error handling for a.size() != b.size()??
  79. if (a.size() != b.size()) {
  80. bt_id_error_message("size missmatch. a.size()= %d, b.size()= %d\n", a.size(), b.size());
  81. abort();
  82. }
  83. for (int i = 0; i < a.size(); i++) {
  84. result(i) = a(i) - b(i);
  85. }
  86. return result;
  87. }
  88. inline vecx operator/(const vecx& a, const idScalar& s) {
  89. vecx result(a.size());
  90. for (int i = 0; i < result.size(); i++) {
  91. result(i) = a(i) / s;
  92. }
  93. return result;
  94. }
  95. // use btMatrixX to implement 3xX matrix
  96. class mat3x : public matxx {
  97. public:
  98. mat3x(){}
  99. mat3x(const mat3x&rhs) {
  100. matxx::resize(rhs.rows(), rhs.cols());
  101. *this = rhs;
  102. }
  103. mat3x(int rows, int cols): matxx(3,cols) {
  104. }
  105. void operator=(const mat3x& rhs) {
  106. if (m_cols != rhs.m_cols) {
  107. bt_id_error_message("size missmatch, cols= %d but rhs.cols= %d\n", cols(), rhs.cols());
  108. abort();
  109. }
  110. for(int i=0;i<rows();i++) {
  111. for(int k=0;k<cols();k++) {
  112. setElem(i,k,rhs(i,k));
  113. }
  114. }
  115. }
  116. void setZero() {
  117. matxx::setZero();
  118. }
  119. };
  120. inline vec3 operator*(const mat3x& a, const vecx& b) {
  121. vec3 result;
  122. if (a.cols() != b.size()) {
  123. bt_id_error_message("size missmatch. a.cols()= %d, b.size()= %d\n", a.cols(), b.size());
  124. abort();
  125. }
  126. result(0)=0.0;
  127. result(1)=0.0;
  128. result(2)=0.0;
  129. for(int i=0;i<b.size();i++) {
  130. for(int k=0;k<3;k++) {
  131. result(k)+=a(k,i)*b(i);
  132. }
  133. }
  134. return result;
  135. }
  136. inline void resize(mat3x &m, idArrayIdx size) {
  137. m.resize(3, size);
  138. m.setZero();
  139. }
  140. inline void setMatxxElem(const idArrayIdx row, const idArrayIdx col, const idScalar val, matxx*m){
  141. m->setElem(row, col, val);
  142. }
  143. inline void setMat3xElem(const idArrayIdx row, const idArrayIdx col, const idScalar val, mat3x*m){
  144. m->setElem(row, col, val);
  145. }
  146. }
  147. #endif // IDLINEARMATHINTERFACE_HPP_