#ifndef _BASIC_GEOMETRY_MATRIX3X2_H_ #define _BASIC_GEOMETRY_MATRIX3X2_H_ #include "vector2.h" #include "vector3.h" #include "matrixes.h" // =================== Reset ==================== // inline void matrix3x2_reset_fp32(matrix3x2_fp32_t* matrix) { matrix->r1c1 = 0.0f; matrix->r1c2 = 0.0f; matrix->r1c3 = 0.0f; matrix->r2c1 = 0.0f; matrix->r2c2 = 0.0f; matrix->r2c3 = 0.0f; } inline void matrix3x2_reset_fp64(matrix3x2_fp64_t* matrix) { matrix->r1c1 = 0.0; matrix->r1c2 = 0.0; matrix->r1c3 = 0.0; matrix->r2c1 = 0.0; matrix->r2c2 = 0.0; matrix->r2c3 = 0.0; } // ==================== Copy ==================== // inline void matrix3x2_copy_fp32(const matrix3x2_fp32_t* from, matrix3x2_fp32_t* to) { to->r1c1 = from->r1c1; to->r1c2 = from->r1c2; to->r1c3 = from->r1c3; to->r2c1 = from->r2c1; to->r2c2 = from->r2c2; to->r2c3 = from->r2c3; } inline void matrix3x2_copy_fp64(const matrix3x2_fp64_t* from, matrix3x2_fp64_t* to) { to->r1c1 = from->r1c1; to->r1c2 = from->r1c2; to->r1c3 = from->r1c3; to->r2c1 = from->r2c1; to->r2c2 = from->r2c2; to->r2c3 = from->r2c3; } // ==================== Swap ==================== // inline void matrix3x2_swap_fp32(matrix3x2_fp32_t* matrix1, matrix3x2_fp32_t* matrix2) { const float r1c1 = matrix2->r1c1; const float r1c2 = matrix2->r1c2; const float r1c3 = matrix2->r1c3; const float r2c1 = matrix2->r2c1; const float r2c2 = matrix2->r2c2; const float r2c3 = matrix2->r2c3; matrix2->r1c1 = matrix1->r1c1; matrix2->r1c2 = matrix1->r1c2; matrix2->r1c3 = matrix1->r1c3; matrix2->r2c1 = matrix1->r2c1; matrix2->r2c2 = matrix1->r2c2; matrix2->r2c3 = matrix1->r2c3; matrix1->r1c1 = r1c1; matrix1->r1c2 = r1c2; matrix1->r1c3 = r1c3; matrix1->r2c1 = r2c1; matrix1->r2c2 = r2c2; matrix1->r2c3 = r2c3; } inline void matrix3x2_swap_fp64(matrix3x2_fp64_t* matrix1, matrix3x2_fp64_t* matrix2) { const double r1c1 = matrix2->r1c1; const double r1c2 = matrix2->r1c2; const double r1c3 = matrix2->r1c3; const double r2c1 = matrix2->r2c1; const double r2c2 = matrix2->r2c2; const double r2c3 = matrix2->r2c3; matrix2->r1c1 = matrix1->r1c1; matrix2->r1c2 = matrix1->r1c2; matrix2->r1c3 = matrix1->r1c3; matrix2->r2c1 = matrix1->r2c1; matrix2->r2c2 = matrix1->r2c2; matrix2->r2c3 = matrix1->r2c3; matrix1->r1c1 = r1c1; matrix1->r1c2 = r1c2; matrix1->r1c3 = r1c3; matrix1->r2c1 = r2c1; matrix1->r2c2 = r2c2; matrix1->r2c3 = r2c3; } // ============= Set from twin type ============= // inline void matrix3x2_fp32_set_from_fp64(const matrix3x2_fp64_t* from, matrix3x2_fp32_t* to) { to->r1c1 = (float) from->r1c1; to->r1c2 = (float) from->r1c2; to->r1c3 = (float) from->r1c3; to->r2c1 = (float) from->r2c1; to->r2c2 = (float) from->r2c2; to->r2c3 = (float) from->r2c3; } inline void matrix3x2_fp64_set_from_fp32(const matrix3x2_fp32_t* from, matrix3x2_fp64_t* to) { to->r1c1 = from->r1c1; to->r1c2 = from->r1c2; to->r1c3 = from->r1c3; to->r2c1 = from->r2c1; to->r2c2 = from->r2c2; to->r2c3 = from->r2c3; } // =============== Set transposed =============== // inline void matrix3x2_fp32_set_transposed(const matrix2x3_fp32_t* from, matrix3x2_fp32_t* to) { to->r1c1 = from->r1c1; to->r1c2 = from->r2c1; to->r1c3 = from->r3c1; to->r2c1 = from->r1c2; to->r2c2 = from->r2c2; to->r2c3 = from->r3c2; } inline void matrix3x2_fp64_set_transposed(const matrix2x3_fp64_t* from, matrix3x2_fp64_t* to) { to->r1c1 = from->r1c1; to->r1c2 = from->r2c1; to->r1c3 = from->r3c1; to->r2c1 = from->r1c2; to->r2c2 = from->r2c2; to->r2c3 = from->r3c2; } // =============== Set transposed =============== // inline void matrix3x2_fp32_set_transposed_fp64(const matrix2x3_fp64_t* from, matrix3x2_fp32_t* to) { to->r1c1 = (float) from->r1c1; to->r1c2 = (float) from->r2c1; to->r1c3 = (float) from->r3c1; to->r2c1 = (float) from->r1c2; to->r2c2 = (float) from->r2c2; to->r2c3 = (float) from->r3c2; } inline void matrix3x2_fp64_set_transposed_fp32(const matrix2x3_fp32_t* from, matrix3x2_fp64_t* to) { to->r1c1 = from->r1c1; to->r1c2 = from->r2c1; to->r1c3 = from->r3c1; to->r2c1 = from->r1c2; to->r2c2 = from->r2c2; to->r2c3 = from->r3c2; } // ================= Set Row 1 ================== // inline void matrix3x2_fp32_set_row1(const float c1, const float c2, const float c3, matrix3x2_fp32_t* matrix) { matrix->r1c1 = c1; matrix->r1c2 = c2; matrix->r1c3 = c3; } inline void matrix3x2_fp64_set_row1(const double c1, const double c2, const double c3, matrix3x2_fp64_t* matrix) { matrix->r1c1 = c1; matrix->r1c2 = c2; matrix->r1c3 = c3; } // ================= Set Row 2 ================== // inline void matrix3x2_fp32_set_row2(const float c1, const float c2, const float c3, matrix3x2_fp32_t* matrix) { matrix->r2c1 = c1; matrix->r2c2 = c2; matrix->r2c3 = c3; } inline void matrix3x2_fp64_set_row2(const double c1, const double c2, const double c3, matrix3x2_fp64_t* matrix) { matrix->r2c1 = c1; matrix->r2c2 = c2; matrix->r2c3 = c3; } // ================ Set Column 1 ================ // inline void matrix3x2_fp32_set_column1(const float r1, const float r2, matrix3x2_fp32_t* matrix) { matrix->r1c1 = r1; matrix->r2c1 = r2; } inline void matrix3x2_fp64_set_column1(const double r1, const double r2, matrix3x2_fp64_t* matrix) { matrix->r1c1 = r1; matrix->r2c1 = r2; } // ================ Set Column 2 ================ // inline void matrix3x2_fp32_set_column2(const float r1, const float r2, matrix3x2_fp32_t* matrix) { matrix->r1c2 = r1; matrix->r2c2 = r2; } inline void matrix3x2_fp64_set_column2(const double r1, const double r2, matrix3x2_fp64_t* matrix) { matrix->r1c2 = r1; matrix->r2c2 = r2; } // ================ Set Column 3 ================ // inline void matrix3x2_fp32_set_column3(const float r1, const float r2, matrix3x2_fp32_t* matrix) { matrix->r1c3 = r1; matrix->r2c3 = r2; } inline void matrix3x2_fp64_set_column3(const double r1, const double r2, matrix3x2_fp64_t* matrix) { matrix->r1c3 = r1; matrix->r2c3 = r2; } // ================ Append scaled =============== // inline void matrix3x2_fp32_append_scaled(matrix3x2_fp32_t* basic_vector, const matrix3x2_fp32_t* scalable_vector, const float scale) { basic_vector->r1c1 += scalable_vector->r1c1 * scale; basic_vector->r1c2 += scalable_vector->r1c2 * scale; basic_vector->r1c3 += scalable_vector->r1c3 * scale; basic_vector->r2c1 += scalable_vector->r2c1 * scale; basic_vector->r2c2 += scalable_vector->r2c2 * scale; basic_vector->r2c3 += scalable_vector->r2c3 * scale; } inline void matrix3x2_fp64_append_scaled(matrix3x2_fp64_t* basic_vector, const matrix3x2_fp64_t* scalable_vector, const double scale) { basic_vector->r1c1 += scalable_vector->r1c1 * scale; basic_vector->r1c2 += scalable_vector->r1c2 * scale; basic_vector->r1c3 += scalable_vector->r1c3 * scale; basic_vector->r2c1 += scalable_vector->r2c1 * scale; basic_vector->r2c2 += scalable_vector->r2c2 * scale; basic_vector->r2c3 += scalable_vector->r2c3 * scale; } // ================== Addition ================== // inline void matrix3x2_fp32_add(const matrix3x2_fp32_t* matrix1, const matrix3x2_fp32_t* matrix2, matrix3x2_fp32_t* sum) { sum->r1c1 = matrix1->r1c1 + matrix2->r1c1; sum->r1c2 = matrix1->r1c2 + matrix2->r1c2; sum->r1c3 = matrix1->r1c3 + matrix2->r1c3; sum->r2c1 = matrix1->r2c1 + matrix2->r2c1; sum->r2c2 = matrix1->r2c2 + matrix2->r2c2; sum->r2c3 = matrix1->r2c3 + matrix2->r2c3; } inline void matrix3x2_fp64_add(const matrix3x2_fp64_t* matrix1, const matrix3x2_fp64_t* matrix2, matrix3x2_fp64_t* sum) { sum->r1c1 = matrix1->r1c1 + matrix2->r1c1; sum->r1c2 = matrix1->r1c2 + matrix2->r1c2; sum->r1c3 = matrix1->r1c3 + matrix2->r1c3; sum->r2c1 = matrix1->r2c1 + matrix2->r2c1; sum->r2c2 = matrix1->r2c2 + matrix2->r2c2; sum->r2c3 = matrix1->r2c3 + matrix2->r2c3; } // ================ Subtraction ================= // inline void matrix3x2_fp32_subtract(const matrix3x2_fp32_t* minuend, const matrix3x2_fp32_t* subtrahend, matrix3x2_fp32_t* difference) { difference->r1c1 = minuend->r1c1 - subtrahend->r1c1; difference->r1c2 = minuend->r1c2 - subtrahend->r1c2; difference->r1c3 = minuend->r1c3 - subtrahend->r1c3; difference->r2c1 = minuend->r2c1 - subtrahend->r2c1; difference->r2c2 = minuend->r2c2 - subtrahend->r2c2; difference->r2c3 = minuend->r2c3 - subtrahend->r2c3; } inline void matrix3x2_fp64_subtract(const matrix3x2_fp64_t* minuend, const matrix3x2_fp64_t* subtrahend, matrix3x2_fp64_t* difference) { difference->r1c1 = minuend->r1c1 - subtrahend->r1c1; difference->r1c2 = minuend->r1c2 - subtrahend->r1c2; difference->r1c3 = minuend->r1c3 - subtrahend->r1c3; difference->r2c1 = minuend->r2c1 - subtrahend->r2c1; difference->r2c2 = minuend->r2c2 - subtrahend->r2c2; difference->r2c3 = minuend->r2c3 - subtrahend->r2c3; } // =============== Multiplication =============== // inline void matrix3x2_fp32_multiply(const matrix3x2_fp32_t* multiplicand, const float multiplier, matrix3x2_fp32_t* product) { product->r1c1 = multiplicand->r1c1 * multiplier; product->r1c2 = multiplicand->r1c2 * multiplier; product->r1c3 = multiplicand->r1c3 * multiplier; product->r2c1 = multiplicand->r2c1 * multiplier; product->r2c2 = multiplicand->r2c2 * multiplier; product->r2c3 = multiplicand->r2c3 * multiplier; } inline void matrix3x2_fp64_multiply(const matrix3x2_fp64_t* multiplicand, const double multiplier, matrix3x2_fp64_t* product) { product->r1c1 = multiplicand->r1c1 * multiplier; product->r1c2 = multiplicand->r1c2 * multiplier; product->r1c3 = multiplicand->r1c3 * multiplier; product->r2c1 = multiplicand->r2c1 * multiplier; product->r2c2 = multiplicand->r2c2 * multiplier; product->r2c3 = multiplicand->r2c3 * multiplier; } // ================== Division ================== // inline void matrix3x2_fp32_divide(const matrix3x2_fp32_t* dividend, const float divisor, matrix3x2_fp32_t* quotient) { matrix3x2_fp32_multiply(dividend, 1.0f / divisor, quotient); } inline void matrix3x2_fp64_divide(const matrix3x2_fp64_t* dividend, const double divisor, matrix3x2_fp64_t* quotient) { matrix3x2_fp64_multiply(dividend, 1.0 / divisor, quotient); } // ============ Left Vector Product ============= // inline void matrix3x2_fp32_left_product(const vector2_fp32_t* vector, const matrix3x2_fp32_t* matrix, vector3_fp32_t* result) { result->x1 = vector->x1 * matrix->r1c1 + vector->x2 * matrix->r2c1; result->x2 = vector->x1 * matrix->r1c2 + vector->x2 * matrix->r2c2; result->x3 = vector->x1 * matrix->r1c3 + vector->x2 * matrix->r2c3; } inline void matrix3x2_fp64_left_product(const vector2_fp64_t* vector, const matrix3x2_fp64_t* matrix, vector3_fp64_t* result) { result->x1 = vector->x1 * matrix->r1c1 + vector->x2 * matrix->r2c1; result->x2 = vector->x1 * matrix->r1c2 + vector->x2 * matrix->r2c2; result->x3 = vector->x1 * matrix->r1c3 + vector->x2 * matrix->r2c3; } // ============ Right Vector Product ============ // inline void matrix3x2_fp32_right_product(const matrix3x2_fp32_t* matrix, const vector3_fp32_t* vector, vector2_fp32_t* result) { result->x1 = matrix->r1c1 * vector->x1 + matrix->r1c2 * vector->x2 + matrix->r1c3 * vector->x3; result->x2 = matrix->r2c1 * vector->x1 + matrix->r2c2 * vector->x2 + matrix->r2c3 * vector->x3; } inline void matrix3x2_fp64_right_product(const matrix3x2_fp64_t* matrix, const vector3_fp64_t* vector, vector2_fp64_t* result) { result->x1 = matrix->r1c1 * vector->x1 + matrix->r1c2 * vector->x2 + matrix->r1c3 * vector->x3; result->x2 = matrix->r2c1 * vector->x1 + matrix->r2c2 * vector->x2 + matrix->r2c3 * vector->x3; } #endif