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Add gsk_transform_to_2d_components
This function decomposes a general 2D transform into skew, scale, rotation and translation. Tests included.
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@ -121,6 +121,14 @@ gsk_transform_alloc (const GskTransformClass *transform_class,
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return self;
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}
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static void
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gsk_transform_finalize (GskTransform *self)
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{
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self->transform_class->finalize (self);
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gsk_transform_unref (self->next);
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}
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/* }}} */
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/* {{{ IDENTITY */
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@ -1022,6 +1030,9 @@ gsk_skew_transform_finalize (GskTransform *self)
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{
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}
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#define DEG_TO_RAD(x) ((x) / 180.f * G_PI)
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#define RAD_TO_DEG(x) ((x) * 180.f / G_PI)
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static void
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gsk_skew_transform_to_matrix (GskTransform *transform,
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graphene_matrix_t *out_matrix)
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@ -1029,8 +1040,8 @@ gsk_skew_transform_to_matrix (GskTransform *transform,
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GskSkewTransform *self = (GskSkewTransform *) transform;
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graphene_matrix_init_skew (out_matrix,
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self->skew_x / 180.0 * G_PI,
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self->skew_y / 180.0 * G_PI);
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DEG_TO_RAD (self->skew_x),
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DEG_TO_RAD (self->skew_y));
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}
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static void
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@ -1104,8 +1115,8 @@ gsk_skew_transform_invert (GskTransform *transform,
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float tx, ty;
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graphene_matrix_t matrix;
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tx = tanf (self->skew_x / 180.0 * G_PI);
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ty = tanf (self->skew_y / 180.0 * G_PI);
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tx = tanf (DEG_TO_RAD (self->skew_x));
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ty = tanf (DEG_TO_RAD (self->skew_y));
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graphene_matrix_init_from_2d (&matrix,
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1 / (1 - tx * ty),
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@ -1506,14 +1517,6 @@ gsk_transform_perspective (GskTransform *next,
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/* }}} */
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/* {{{ PUBLIC API */
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static void
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gsk_transform_finalize (GskTransform *self)
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{
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self->transform_class->finalize (self);
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gsk_transform_unref (self->next);
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}
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/**
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* gsk_transform_ref:
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* @self: (nullable): a `GskTransform`
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@ -1697,6 +1700,95 @@ gsk_transform_to_2d (GskTransform *self,
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out_dx, out_dy);
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}
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/**
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* gsk_transform_to_2d_components:
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* @self: a `GskTransform`
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* @out_skew_x: (out): return location for the skew factor
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* in the x direction
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* @out_skew_y: (out): return location for the skew factor
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* in the y direction
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* @out_scale_x: (out): return location for the scale
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* factor in the x direction
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* @out_scale_y: (out): return location for the scale
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* factor in the y direction
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* @out_angle: (out): return location for the rotation angle
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* @out_dx: (out): return location for the translation
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* in the x direction
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* @out_dy: (out): return location for the translation
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* in the y direction
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*
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* Converts a `GskTransform` to 2D transformation factors.
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*
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* To recreate an equivalent transform from the factors returned
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* by this function, use
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*
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* gsk_transform_skew (
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* gsk_transform_scale (
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* gsk_transform_rotate (
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* gsk_transform_translate (NULL, &GRAPHENE_POINT_T (dx, dy)),
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* angle),
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* scale_x, scale_y),
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* skew_x, skew_y)
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*
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* @self must be a 2D transformation. If you are not sure, use
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*
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* gsk_transform_get_category() >= %GSK_TRANSFORM_CATEGORY_2D
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*
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* to check.
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*
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* Since: 4.6
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*/
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void
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gsk_transform_to_2d_components (GskTransform *self,
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float *out_skew_x,
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float *out_skew_y,
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float *out_scale_x,
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float *out_scale_y,
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float *out_angle,
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float *out_dx,
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float *out_dy)
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{
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float a, b, c, d, e, f;
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gsk_transform_to_2d (self, &a, &b, &c, &d, &e, &f);
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*out_dx = e;
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*out_dy = f;
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#define sign(f) ((f) < 0 ? -1 : 1)
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if (a != 0 || b != 0)
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{
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float det = a * d - b * c;
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float r = sqrtf (a*a + b*b);
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*out_angle = RAD_TO_DEG (sign (b) * acosf (a / r));
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*out_scale_x = r;
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*out_scale_y = det / r;
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*out_skew_x = RAD_TO_DEG (atanf ((a*c + b*d) / (r*r)));
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*out_skew_y = 0;
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}
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else if (c != 0 || d != 0)
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{
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float det = a * d - b * c;
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float s = sqrtf (c*c + d*d);
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*out_angle = RAD_TO_DEG (G_PI/2 - sign (d) * acosf (-c / s));
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*out_scale_x = det / s;
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*out_scale_y = s;
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*out_skew_x = 0;
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*out_skew_y = RAD_TO_DEG (atanf ((a*c + b*d) / (s*s)));
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}
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else
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{
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*out_angle = 0;
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*out_scale_x = 0;
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*out_scale_y = 0;
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*out_skew_x = 0;
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*out_skew_y = 0;
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}
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}
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/**
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* gsk_transform_to_affine:
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* @self: a `GskTransform`
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@ -1718,7 +1810,7 @@ gsk_transform_to_2d (GskTransform *self,
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* &GRAPHENE_POINT_T (dx, dy)),
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* sx, sy)
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*
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* @self must be a 2D transformation. If you are not
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* @self must be a 2D affine transformation. If you are not
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* sure, use
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*
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* gsk_transform_get_category() >= %GSK_TRANSFORM_CATEGORY_2D_AFFINE
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@ -59,6 +59,15 @@ void gsk_transform_to_2d (GskTransform
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float *out_yy,
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float *out_dx,
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float *out_dy);
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GDK_AVAILABLE_IN_4_6
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void gsk_transform_to_2d_components (GskTransform *self,
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float *out_skew_x,
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float *out_skew_y,
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float *out_scale_x,
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float *out_scale_y,
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float *out_angle,
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float *out_dx,
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float *out_dy);
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GDK_AVAILABLE_IN_ALL
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void gsk_transform_to_affine (GskTransform *self,
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float *out_scale_x,
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@ -657,6 +657,84 @@ test_to_2d (void)
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g_assert_cmpfloat (dy, ==, 0.0);
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}
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static void
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test_to_2d_components (void)
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{
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GskTransform *transform, *transform2;
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float skew_x, skew_y, scale_x, scale_y, angle, dx, dy;
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graphene_matrix_t m, m2;
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transform = gsk_transform_scale (
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gsk_transform_rotate (
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gsk_transform_translate (NULL, &GRAPHENE_POINT_INIT (10, 20)),
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22),
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3, 3);
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gsk_transform_to_2d_components (transform,
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&skew_x, &skew_y,
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&scale_x, &scale_y,
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&angle,
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&dx, &dy);
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g_assert_cmpfloat_with_epsilon (skew_x, 0, 0.0001);
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g_assert_cmpfloat_with_epsilon (skew_y, 0, 0.0001);
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g_assert_cmpfloat_with_epsilon (scale_x, 3, 0.0001);
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g_assert_cmpfloat_with_epsilon (scale_y, 3, 0.0001);
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g_assert_cmpfloat_with_epsilon (angle, 22, 0.0001);
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g_assert_cmpfloat_with_epsilon (dx, 10, 0.0001);
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g_assert_cmpfloat_with_epsilon (dy, 20, 0.0001);
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gsk_transform_unref (transform);
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transform = gsk_transform_skew (
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gsk_transform_scale (
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gsk_transform_rotate (
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gsk_transform_translate (NULL, &GRAPHENE_POINT_INIT (10, 20)),
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22),
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3, 6),
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33, 0);
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g_assert_true (gsk_transform_get_category (transform) >= GSK_TRANSFORM_CATEGORY_2D);
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gsk_transform_to_2d_components (transform,
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&skew_x, &skew_y,
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&scale_x, &scale_y,
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&angle,
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&dx, &dy);
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transform2 = gsk_transform_skew (
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gsk_transform_scale (
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gsk_transform_rotate (
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gsk_transform_translate (NULL, &GRAPHENE_POINT_INIT (dx, dy)),
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angle),
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scale_x, scale_y),
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skew_x, skew_y);
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gsk_transform_to_matrix (transform, &m);
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gsk_transform_to_matrix (transform2, &m2);
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g_assert_true (graphene_matrix_near (&m, &m2, 0.001));
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gsk_transform_unref (transform);
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gsk_transform_unref (transform2);
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}
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static void
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test_transform_point (void)
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{
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GskTransform *t, *t2;
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graphene_point_t p;
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t = gsk_transform_scale (gsk_transform_translate (NULL, &GRAPHENE_POINT_INIT (1, 2)), 2, 2);
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t2 = gsk_transform_translate (gsk_transform_scale (NULL, 2, 2), &GRAPHENE_POINT_INIT (1, 2));
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gsk_transform_transform_point (t, &GRAPHENE_POINT_INIT (1,1), &p);
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g_assert_true (graphene_point_equal (&p, &GRAPHENE_POINT_INIT (3, 4)));
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gsk_transform_transform_point (t2, &GRAPHENE_POINT_INIT (1,1), &p);
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g_assert_true (graphene_point_equal (&p, &GRAPHENE_POINT_INIT (4, 6)));
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gsk_transform_unref (t);
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gsk_transform_unref (t2);
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}
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int
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main (int argc,
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char *argv[])
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@ -672,7 +750,9 @@ main (int argc,
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g_test_add_func ("/transform/check-axis-aligneness", test_axis_aligned);
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g_test_add_func ("/transform/to-affine", test_to_affine);
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g_test_add_func ("/transform/bounds", test_transform_bounds);
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g_test_add_func ("/transform/point", test_transform_point);
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g_test_add_func ("/transform/to-2d", test_to_2d);
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g_test_add_func ("/transform/to-2d-components", test_to_2d_components);
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return g_test_run ();
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}
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