class_basis.rst 30 KB

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  1. :github_url: hide
  2. .. DO NOT EDIT THIS FILE!!!
  3. .. Generated automatically from Godot engine sources.
  4. .. Generator: https://github.com/godotengine/godot/tree/master/doc/tools/make_rst.py.
  5. .. XML source: https://github.com/godotengine/godot/tree/master/doc/classes/Basis.xml.
  6. .. _class_Basis:
  7. Basis
  8. =====
  9. A 3×3 matrix for representing 3D rotation and scale.
  10. .. rst-class:: classref-introduction-group
  11. Description
  12. -----------
  13. A 3×3 matrix used for representing 3D rotation and scale. Usually used as an orthogonal basis for a :ref:`Transform3D<class_Transform3D>`.
  14. Contains 3 vector fields X, Y and Z as its columns, which are typically interpreted as the local basis vectors of a transformation. For such use, it is composed of a scaling and a rotation matrix, in that order (M = R.S).
  15. Basis can also be accessed as an array of 3D vectors. These vectors are usually orthogonal to each other, but are not necessarily normalized (due to scaling).
  16. For more information, read the "Matrices and transforms" documentation article.
  17. .. note::
  18. There are notable differences when using this API with C#. See :ref:`doc_c_sharp_differences` for more information.
  19. .. rst-class:: classref-introduction-group
  20. Tutorials
  21. ---------
  22. - :doc:`Math documentation index <../tutorials/math/index>`
  23. - :doc:`Matrices and transforms <../tutorials/math/matrices_and_transforms>`
  24. - :doc:`Using 3D transforms <../tutorials/3d/using_transforms>`
  25. - `Matrix Transform Demo <https://godotengine.org/asset-library/asset/584>`__
  26. - `3D Platformer Demo <https://godotengine.org/asset-library/asset/125>`__
  27. - `3D Voxel Demo <https://godotengine.org/asset-library/asset/676>`__
  28. - `2.5D Demo <https://godotengine.org/asset-library/asset/583>`__
  29. .. rst-class:: classref-reftable-group
  30. Properties
  31. ----------
  32. .. table::
  33. :widths: auto
  34. +-------------------------------+----------------------------------+----------------------+
  35. | :ref:`Vector3<class_Vector3>` | :ref:`x<class_Basis_property_x>` | ``Vector3(1, 0, 0)`` |
  36. +-------------------------------+----------------------------------+----------------------+
  37. | :ref:`Vector3<class_Vector3>` | :ref:`y<class_Basis_property_y>` | ``Vector3(0, 1, 0)`` |
  38. +-------------------------------+----------------------------------+----------------------+
  39. | :ref:`Vector3<class_Vector3>` | :ref:`z<class_Basis_property_z>` | ``Vector3(0, 0, 1)`` |
  40. +-------------------------------+----------------------------------+----------------------+
  41. .. rst-class:: classref-reftable-group
  42. Constructors
  43. ------------
  44. .. table::
  45. :widths: auto
  46. +---------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  47. | :ref:`Basis<class_Basis>` | :ref:`Basis<class_Basis_constructor_Basis>` **(** **)** |
  48. +---------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  49. | :ref:`Basis<class_Basis>` | :ref:`Basis<class_Basis_constructor_Basis>` **(** :ref:`Basis<class_Basis>` from **)** |
  50. +---------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  51. | :ref:`Basis<class_Basis>` | :ref:`Basis<class_Basis_constructor_Basis>` **(** :ref:`Vector3<class_Vector3>` axis, :ref:`float<class_float>` angle **)** |
  52. +---------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  53. | :ref:`Basis<class_Basis>` | :ref:`Basis<class_Basis_constructor_Basis>` **(** :ref:`Quaternion<class_Quaternion>` from **)** |
  54. +---------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  55. | :ref:`Basis<class_Basis>` | :ref:`Basis<class_Basis_constructor_Basis>` **(** :ref:`Vector3<class_Vector3>` x_axis, :ref:`Vector3<class_Vector3>` y_axis, :ref:`Vector3<class_Vector3>` z_axis **)** |
  56. +---------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  57. .. rst-class:: classref-reftable-group
  58. Methods
  59. -------
  60. .. table::
  61. :widths: auto
  62. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  63. | :ref:`float<class_float>` | :ref:`determinant<class_Basis_method_determinant>` **(** **)** |const| |
  64. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  65. | :ref:`Basis<class_Basis>` | :ref:`from_euler<class_Basis_method_from_euler>` **(** :ref:`Vector3<class_Vector3>` euler, :ref:`int<class_int>` order=2 **)** |static| |
  66. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  67. | :ref:`Basis<class_Basis>` | :ref:`from_scale<class_Basis_method_from_scale>` **(** :ref:`Vector3<class_Vector3>` scale **)** |static| |
  68. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  69. | :ref:`Vector3<class_Vector3>` | :ref:`get_euler<class_Basis_method_get_euler>` **(** :ref:`int<class_int>` order=2 **)** |const| |
  70. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  71. | :ref:`Quaternion<class_Quaternion>` | :ref:`get_rotation_quaternion<class_Basis_method_get_rotation_quaternion>` **(** **)** |const| |
  72. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  73. | :ref:`Vector3<class_Vector3>` | :ref:`get_scale<class_Basis_method_get_scale>` **(** **)** |const| |
  74. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  75. | :ref:`Basis<class_Basis>` | :ref:`inverse<class_Basis_method_inverse>` **(** **)** |const| |
  76. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  77. | :ref:`bool<class_bool>` | :ref:`is_conformal<class_Basis_method_is_conformal>` **(** **)** |const| |
  78. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  79. | :ref:`bool<class_bool>` | :ref:`is_equal_approx<class_Basis_method_is_equal_approx>` **(** :ref:`Basis<class_Basis>` b **)** |const| |
  80. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  81. | :ref:`bool<class_bool>` | :ref:`is_finite<class_Basis_method_is_finite>` **(** **)** |const| |
  82. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  83. | :ref:`Basis<class_Basis>` | :ref:`looking_at<class_Basis_method_looking_at>` **(** :ref:`Vector3<class_Vector3>` target, :ref:`Vector3<class_Vector3>` up=Vector3(0, 1, 0), :ref:`bool<class_bool>` use_model_front=false **)** |static| |
  84. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  85. | :ref:`Basis<class_Basis>` | :ref:`orthonormalized<class_Basis_method_orthonormalized>` **(** **)** |const| |
  86. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  87. | :ref:`Basis<class_Basis>` | :ref:`rotated<class_Basis_method_rotated>` **(** :ref:`Vector3<class_Vector3>` axis, :ref:`float<class_float>` angle **)** |const| |
  88. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  89. | :ref:`Basis<class_Basis>` | :ref:`scaled<class_Basis_method_scaled>` **(** :ref:`Vector3<class_Vector3>` scale **)** |const| |
  90. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  91. | :ref:`Basis<class_Basis>` | :ref:`slerp<class_Basis_method_slerp>` **(** :ref:`Basis<class_Basis>` to, :ref:`float<class_float>` weight **)** |const| |
  92. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  93. | :ref:`float<class_float>` | :ref:`tdotx<class_Basis_method_tdotx>` **(** :ref:`Vector3<class_Vector3>` with **)** |const| |
  94. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  95. | :ref:`float<class_float>` | :ref:`tdoty<class_Basis_method_tdoty>` **(** :ref:`Vector3<class_Vector3>` with **)** |const| |
  96. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  97. | :ref:`float<class_float>` | :ref:`tdotz<class_Basis_method_tdotz>` **(** :ref:`Vector3<class_Vector3>` with **)** |const| |
  98. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  99. | :ref:`Basis<class_Basis>` | :ref:`transposed<class_Basis_method_transposed>` **(** **)** |const| |
  100. +-------------------------------------+--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------+
  101. .. rst-class:: classref-reftable-group
  102. Operators
  103. ---------
  104. .. table::
  105. :widths: auto
  106. +-------------------------------+-----------------------------------------------------------------------------------------------------+
  107. | :ref:`bool<class_bool>` | :ref:`operator !=<class_Basis_operator_neq_Basis>` **(** :ref:`Basis<class_Basis>` right **)** |
  108. +-------------------------------+-----------------------------------------------------------------------------------------------------+
  109. | :ref:`Basis<class_Basis>` | :ref:`operator *<class_Basis_operator_mul_Basis>` **(** :ref:`Basis<class_Basis>` right **)** |
  110. +-------------------------------+-----------------------------------------------------------------------------------------------------+
  111. | :ref:`Vector3<class_Vector3>` | :ref:`operator *<class_Basis_operator_mul_Vector3>` **(** :ref:`Vector3<class_Vector3>` right **)** |
  112. +-------------------------------+-----------------------------------------------------------------------------------------------------+
  113. | :ref:`Basis<class_Basis>` | :ref:`operator *<class_Basis_operator_mul_float>` **(** :ref:`float<class_float>` right **)** |
  114. +-------------------------------+-----------------------------------------------------------------------------------------------------+
  115. | :ref:`Basis<class_Basis>` | :ref:`operator *<class_Basis_operator_mul_int>` **(** :ref:`int<class_int>` right **)** |
  116. +-------------------------------+-----------------------------------------------------------------------------------------------------+
  117. | :ref:`bool<class_bool>` | :ref:`operator ==<class_Basis_operator_eq_Basis>` **(** :ref:`Basis<class_Basis>` right **)** |
  118. +-------------------------------+-----------------------------------------------------------------------------------------------------+
  119. | :ref:`Vector3<class_Vector3>` | :ref:`operator []<class_Basis_operator_idx_int>` **(** :ref:`int<class_int>` index **)** |
  120. +-------------------------------+-----------------------------------------------------------------------------------------------------+
  121. .. rst-class:: classref-section-separator
  122. ----
  123. .. rst-class:: classref-descriptions-group
  124. Constants
  125. ---------
  126. .. _class_Basis_constant_IDENTITY:
  127. .. rst-class:: classref-constant
  128. **IDENTITY** = ``Basis(1, 0, 0, 0, 1, 0, 0, 0, 1)``
  129. The identity basis, with no rotation or scaling applied.
  130. This is identical to calling ``Basis()`` without any parameters. This constant can be used to make your code clearer, and for consistency with C#.
  131. .. _class_Basis_constant_FLIP_X:
  132. .. rst-class:: classref-constant
  133. **FLIP_X** = ``Basis(-1, 0, 0, 0, 1, 0, 0, 0, 1)``
  134. The basis that will flip something along the X axis when used in a transformation.
  135. .. _class_Basis_constant_FLIP_Y:
  136. .. rst-class:: classref-constant
  137. **FLIP_Y** = ``Basis(1, 0, 0, 0, -1, 0, 0, 0, 1)``
  138. The basis that will flip something along the Y axis when used in a transformation.
  139. .. _class_Basis_constant_FLIP_Z:
  140. .. rst-class:: classref-constant
  141. **FLIP_Z** = ``Basis(1, 0, 0, 0, 1, 0, 0, 0, -1)``
  142. The basis that will flip something along the Z axis when used in a transformation.
  143. .. rst-class:: classref-section-separator
  144. ----
  145. .. rst-class:: classref-descriptions-group
  146. Property Descriptions
  147. ---------------------
  148. .. _class_Basis_property_x:
  149. .. rst-class:: classref-property
  150. :ref:`Vector3<class_Vector3>` **x** = ``Vector3(1, 0, 0)``
  151. The basis matrix's X vector (column 0). Equivalent to array index ``0``.
  152. .. rst-class:: classref-item-separator
  153. ----
  154. .. _class_Basis_property_y:
  155. .. rst-class:: classref-property
  156. :ref:`Vector3<class_Vector3>` **y** = ``Vector3(0, 1, 0)``
  157. The basis matrix's Y vector (column 1). Equivalent to array index ``1``.
  158. .. rst-class:: classref-item-separator
  159. ----
  160. .. _class_Basis_property_z:
  161. .. rst-class:: classref-property
  162. :ref:`Vector3<class_Vector3>` **z** = ``Vector3(0, 0, 1)``
  163. The basis matrix's Z vector (column 2). Equivalent to array index ``2``.
  164. .. rst-class:: classref-section-separator
  165. ----
  166. .. rst-class:: classref-descriptions-group
  167. Constructor Descriptions
  168. ------------------------
  169. .. _class_Basis_constructor_Basis:
  170. .. rst-class:: classref-constructor
  171. :ref:`Basis<class_Basis>` **Basis** **(** **)**
  172. Constructs a default-initialized **Basis** set to :ref:`IDENTITY<class_Basis_constant_IDENTITY>`.
  173. .. rst-class:: classref-item-separator
  174. ----
  175. .. rst-class:: classref-constructor
  176. :ref:`Basis<class_Basis>` **Basis** **(** :ref:`Basis<class_Basis>` from **)**
  177. Constructs a **Basis** as a copy of the given **Basis**.
  178. .. rst-class:: classref-item-separator
  179. ----
  180. .. rst-class:: classref-constructor
  181. :ref:`Basis<class_Basis>` **Basis** **(** :ref:`Vector3<class_Vector3>` axis, :ref:`float<class_float>` angle **)**
  182. Constructs a pure rotation basis matrix, rotated around the given ``axis`` by ``angle`` (in radians). The axis must be a normalized vector.
  183. .. rst-class:: classref-item-separator
  184. ----
  185. .. rst-class:: classref-constructor
  186. :ref:`Basis<class_Basis>` **Basis** **(** :ref:`Quaternion<class_Quaternion>` from **)**
  187. Constructs a pure rotation basis matrix from the given quaternion.
  188. .. rst-class:: classref-item-separator
  189. ----
  190. .. rst-class:: classref-constructor
  191. :ref:`Basis<class_Basis>` **Basis** **(** :ref:`Vector3<class_Vector3>` x_axis, :ref:`Vector3<class_Vector3>` y_axis, :ref:`Vector3<class_Vector3>` z_axis **)**
  192. Constructs a basis matrix from 3 axis vectors (matrix columns).
  193. .. rst-class:: classref-section-separator
  194. ----
  195. .. rst-class:: classref-descriptions-group
  196. Method Descriptions
  197. -------------------
  198. .. _class_Basis_method_determinant:
  199. .. rst-class:: classref-method
  200. :ref:`float<class_float>` **determinant** **(** **)** |const|
  201. Returns the determinant of the basis matrix. If the basis is uniformly scaled, its determinant is the square of the scale.
  202. A negative determinant means the basis has a negative scale. A zero determinant means the basis isn't invertible, and is usually considered invalid.
  203. .. rst-class:: classref-item-separator
  204. ----
  205. .. _class_Basis_method_from_euler:
  206. .. rst-class:: classref-method
  207. :ref:`Basis<class_Basis>` **from_euler** **(** :ref:`Vector3<class_Vector3>` euler, :ref:`int<class_int>` order=2 **)** |static|
  208. Constructs a pure rotation Basis matrix from Euler angles in the specified Euler rotation order. By default, use YXZ order (most common). See the :ref:`EulerOrder<enum_@GlobalScope_EulerOrder>` enum for possible values.
  209. .. rst-class:: classref-item-separator
  210. ----
  211. .. _class_Basis_method_from_scale:
  212. .. rst-class:: classref-method
  213. :ref:`Basis<class_Basis>` **from_scale** **(** :ref:`Vector3<class_Vector3>` scale **)** |static|
  214. Constructs a pure scale basis matrix with no rotation or shearing. The scale values are set as the diagonal of the matrix, and the other parts of the matrix are zero.
  215. .. rst-class:: classref-item-separator
  216. ----
  217. .. _class_Basis_method_get_euler:
  218. .. rst-class:: classref-method
  219. :ref:`Vector3<class_Vector3>` **get_euler** **(** :ref:`int<class_int>` order=2 **)** |const|
  220. Returns the basis's rotation in the form of Euler angles. The Euler order depends on the ``order`` parameter, by default it uses the YXZ convention: when decomposing, first Z, then X, and Y last. The returned vector contains the rotation angles in the format (X angle, Y angle, Z angle).
  221. Consider using the :ref:`get_rotation_quaternion<class_Basis_method_get_rotation_quaternion>` method instead, which returns a :ref:`Quaternion<class_Quaternion>` quaternion instead of Euler angles.
  222. .. rst-class:: classref-item-separator
  223. ----
  224. .. _class_Basis_method_get_rotation_quaternion:
  225. .. rst-class:: classref-method
  226. :ref:`Quaternion<class_Quaternion>` **get_rotation_quaternion** **(** **)** |const|
  227. Returns the basis's rotation in the form of a quaternion. See :ref:`get_euler<class_Basis_method_get_euler>` if you need Euler angles, but keep in mind quaternions should generally be preferred to Euler angles.
  228. .. rst-class:: classref-item-separator
  229. ----
  230. .. _class_Basis_method_get_scale:
  231. .. rst-class:: classref-method
  232. :ref:`Vector3<class_Vector3>` **get_scale** **(** **)** |const|
  233. Assuming that the matrix is the combination of a rotation and scaling, return the absolute value of scaling factors along each axis.
  234. .. rst-class:: classref-item-separator
  235. ----
  236. .. _class_Basis_method_inverse:
  237. .. rst-class:: classref-method
  238. :ref:`Basis<class_Basis>` **inverse** **(** **)** |const|
  239. Returns the inverse of the matrix.
  240. .. rst-class:: classref-item-separator
  241. ----
  242. .. _class_Basis_method_is_conformal:
  243. .. rst-class:: classref-method
  244. :ref:`bool<class_bool>` **is_conformal** **(** **)** |const|
  245. Returns ``true`` if the basis is conformal, meaning it preserves angles and distance ratios, and may only be composed of rotation and uniform scale. Returns ``false`` if the basis has non-uniform scale or shear/skew. This can be used to validate if the basis is non-distorted, which is important for physics and other use cases.
  246. .. rst-class:: classref-item-separator
  247. ----
  248. .. _class_Basis_method_is_equal_approx:
  249. .. rst-class:: classref-method
  250. :ref:`bool<class_bool>` **is_equal_approx** **(** :ref:`Basis<class_Basis>` b **)** |const|
  251. Returns ``true`` if this basis and ``b`` are approximately equal, by calling :ref:`@GlobalScope.is_equal_approx<class_@GlobalScope_method_is_equal_approx>` on all vector components.
  252. .. rst-class:: classref-item-separator
  253. ----
  254. .. _class_Basis_method_is_finite:
  255. .. rst-class:: classref-method
  256. :ref:`bool<class_bool>` **is_finite** **(** **)** |const|
  257. Returns ``true`` if this basis is finite, by calling :ref:`@GlobalScope.is_finite<class_@GlobalScope_method_is_finite>` on all vector components.
  258. .. rst-class:: classref-item-separator
  259. ----
  260. .. _class_Basis_method_looking_at:
  261. .. rst-class:: classref-method
  262. :ref:`Basis<class_Basis>` **looking_at** **(** :ref:`Vector3<class_Vector3>` target, :ref:`Vector3<class_Vector3>` up=Vector3(0, 1, 0), :ref:`bool<class_bool>` use_model_front=false **)** |static|
  263. Creates a Basis with a rotation such that the forward axis (-Z) points towards the ``target`` position.
  264. The up axis (+Y) points as close to the ``up`` vector as possible while staying perpendicular to the forward axis. The resulting Basis is orthonormalized. The ``target`` and ``up`` vectors cannot be zero, and cannot be parallel to each other.
  265. If ``use_model_front`` is ``true``, the +Z axis (asset front) is treated as forward (implies +X is left) and points toward the ``target`` position. By default, the -Z axis (camera forward) is treated as forward (implies +X is right).
  266. .. rst-class:: classref-item-separator
  267. ----
  268. .. _class_Basis_method_orthonormalized:
  269. .. rst-class:: classref-method
  270. :ref:`Basis<class_Basis>` **orthonormalized** **(** **)** |const|
  271. Returns the orthonormalized version of the matrix (useful to call from time to time to avoid rounding error for orthogonal matrices). This performs a Gram-Schmidt orthonormalization on the basis of the matrix.
  272. .. rst-class:: classref-item-separator
  273. ----
  274. .. _class_Basis_method_rotated:
  275. .. rst-class:: classref-method
  276. :ref:`Basis<class_Basis>` **rotated** **(** :ref:`Vector3<class_Vector3>` axis, :ref:`float<class_float>` angle **)** |const|
  277. Introduce an additional rotation around the given axis by ``angle`` (in radians). The axis must be a normalized vector.
  278. .. rst-class:: classref-item-separator
  279. ----
  280. .. _class_Basis_method_scaled:
  281. .. rst-class:: classref-method
  282. :ref:`Basis<class_Basis>` **scaled** **(** :ref:`Vector3<class_Vector3>` scale **)** |const|
  283. Introduce an additional scaling specified by the given 3D scaling factor.
  284. .. rst-class:: classref-item-separator
  285. ----
  286. .. _class_Basis_method_slerp:
  287. .. rst-class:: classref-method
  288. :ref:`Basis<class_Basis>` **slerp** **(** :ref:`Basis<class_Basis>` to, :ref:`float<class_float>` weight **)** |const|
  289. Assuming that the matrix is a proper rotation matrix, slerp performs a spherical-linear interpolation with another rotation matrix.
  290. .. rst-class:: classref-item-separator
  291. ----
  292. .. _class_Basis_method_tdotx:
  293. .. rst-class:: classref-method
  294. :ref:`float<class_float>` **tdotx** **(** :ref:`Vector3<class_Vector3>` with **)** |const|
  295. Transposed dot product with the X axis of the matrix.
  296. .. rst-class:: classref-item-separator
  297. ----
  298. .. _class_Basis_method_tdoty:
  299. .. rst-class:: classref-method
  300. :ref:`float<class_float>` **tdoty** **(** :ref:`Vector3<class_Vector3>` with **)** |const|
  301. Transposed dot product with the Y axis of the matrix.
  302. .. rst-class:: classref-item-separator
  303. ----
  304. .. _class_Basis_method_tdotz:
  305. .. rst-class:: classref-method
  306. :ref:`float<class_float>` **tdotz** **(** :ref:`Vector3<class_Vector3>` with **)** |const|
  307. Transposed dot product with the Z axis of the matrix.
  308. .. rst-class:: classref-item-separator
  309. ----
  310. .. _class_Basis_method_transposed:
  311. .. rst-class:: classref-method
  312. :ref:`Basis<class_Basis>` **transposed** **(** **)** |const|
  313. Returns the transposed version of the matrix.
  314. .. rst-class:: classref-section-separator
  315. ----
  316. .. rst-class:: classref-descriptions-group
  317. Operator Descriptions
  318. ---------------------
  319. .. _class_Basis_operator_neq_Basis:
  320. .. rst-class:: classref-operator
  321. :ref:`bool<class_bool>` **operator !=** **(** :ref:`Basis<class_Basis>` right **)**
  322. Returns ``true`` if the **Basis** matrices are not equal.
  323. \ **Note:** Due to floating-point precision errors, consider using :ref:`is_equal_approx<class_Basis_method_is_equal_approx>` instead, which is more reliable.
  324. .. rst-class:: classref-item-separator
  325. ----
  326. .. _class_Basis_operator_mul_Basis:
  327. .. rst-class:: classref-operator
  328. :ref:`Basis<class_Basis>` **operator *** **(** :ref:`Basis<class_Basis>` right **)**
  329. Composes these two basis matrices by multiplying them together. This has the effect of transforming the second basis (the child) by the first basis (the parent).
  330. .. rst-class:: classref-item-separator
  331. ----
  332. .. _class_Basis_operator_mul_Vector3:
  333. .. rst-class:: classref-operator
  334. :ref:`Vector3<class_Vector3>` **operator *** **(** :ref:`Vector3<class_Vector3>` right **)**
  335. Transforms (multiplies) the :ref:`Vector3<class_Vector3>` by the given **Basis** matrix.
  336. .. rst-class:: classref-item-separator
  337. ----
  338. .. _class_Basis_operator_mul_float:
  339. .. rst-class:: classref-operator
  340. :ref:`Basis<class_Basis>` **operator *** **(** :ref:`float<class_float>` right **)**
  341. This operator multiplies all components of the **Basis**, which scales it uniformly.
  342. .. rst-class:: classref-item-separator
  343. ----
  344. .. _class_Basis_operator_mul_int:
  345. .. rst-class:: classref-operator
  346. :ref:`Basis<class_Basis>` **operator *** **(** :ref:`int<class_int>` right **)**
  347. This operator multiplies all components of the **Basis**, which scales it uniformly.
  348. .. rst-class:: classref-item-separator
  349. ----
  350. .. _class_Basis_operator_eq_Basis:
  351. .. rst-class:: classref-operator
  352. :ref:`bool<class_bool>` **operator ==** **(** :ref:`Basis<class_Basis>` right **)**
  353. Returns ``true`` if the **Basis** matrices are exactly equal.
  354. \ **Note:** Due to floating-point precision errors, consider using :ref:`is_equal_approx<class_Basis_method_is_equal_approx>` instead, which is more reliable.
  355. .. rst-class:: classref-item-separator
  356. ----
  357. .. _class_Basis_operator_idx_int:
  358. .. rst-class:: classref-operator
  359. :ref:`Vector3<class_Vector3>` **operator []** **(** :ref:`int<class_int>` index **)**
  360. Access basis components using their index. ``b[0]`` is equivalent to ``b.x``, ``b[1]`` is equivalent to ``b.y``, and ``b[2]`` is equivalent to ``b.z``.
  361. .. |virtual| replace:: :abbr:`virtual (This method should typically be overridden by the user to have any effect.)`
  362. .. |const| replace:: :abbr:`const (This method has no side effects. It doesn't modify any of the instance's member variables.)`
  363. .. |vararg| replace:: :abbr:`vararg (This method accepts any number of arguments after the ones described here.)`
  364. .. |constructor| replace:: :abbr:`constructor (This method is used to construct a type.)`
  365. .. |static| replace:: :abbr:`static (This method doesn't need an instance to be called, so it can be called directly using the class name.)`
  366. .. |operator| replace:: :abbr:`operator (This method describes a valid operator to use with this type as left-hand operand.)`
  367. .. |bitfield| replace:: :abbr:`BitField (This value is an integer composed as a bitmask of the following flags.)`