255 const float brush_radius_cu,
260 const float brush_radius_sq_cu =
pow2f(brush_radius_cu);
264 for (
const int curve_i : segment) {
265 const int first_point_i = offsets[curve_i];
266 const float3 old_pos_cu =
self_->initial_deformed_positions_cu_[first_point_i];
268 if (dist_to_brush_sq_cu > brush_radius_sq_cu) {
272 const float dist_to_brush_cu = std::sqrt(dist_to_brush_sq_cu);
274 brush_, dist_to_brush_cu, brush_radius_cu);
276 const float2 uv = surface_uv_coords[curve_i];
278 if (
result.type != ReverseUVSampler::ResultType::Ok) {
291 r_curves_to_slide.
append({curve_i, radius_falloff, normal_cu});
328 for (const SlideCurveInfo &slide_curve_info : slide_curves.slice(range)) {
329 const int curve_i = slide_curve_info.curve_i;
330 const IndexRange points = points_by_curve[curve_i];
331 const int first_point_i = points[0];
333 const float3 old_first_pos_eval_cu = self_->initial_deformed_positions_cu_[first_point_i];
334 const float3 old_first_symm_pos_eval_cu = math::transform_point(brush_transform_inv,
335 old_first_pos_eval_cu);
336 const float3 old_first_pos_eval_su = math::transform_point(transforms_.curves_to_surface,
337 old_first_pos_eval_cu);
339 const float2 old_first_symm_pos_eval_re = ED_view3d_project_float_v2_m4(
340 ctx_.region, old_first_symm_pos_eval_cu, projection);
342 const float radius_falloff = slide_curve_info.radius_falloff;
343 const float curve_weight = brush_strength_ * radius_falloff * curve_factors_[curve_i];
344 const float2 new_first_symm_pos_eval_re = old_first_symm_pos_eval_re +
345 curve_weight * brush_pos_diff_re;
348 float3 ray_start_wo, ray_end_wo;
349 ED_view3d_win_to_segment_clipped(ctx_.depsgraph,
352 new_first_symm_pos_eval_re,
356 const float3 ray_start_su = math::transform_point(world_to_surface_with_symmetry_mat,
358 const float3 ray_end_su = math::transform_point(world_to_surface_with_symmetry_mat,
360 const float3 ray_direction_su = math::normalize(ray_end_su - ray_start_su);
364 float3 hit_pos_eval_su;
365 if (!this->find_closest_ray_hit(ray_start_su,
367 old_first_pos_eval_su,
375 const int3 &tri_eval = surface_corner_tris_eval_[tri_index_eval];
376 const float3 bary_weights_eval = bke::mesh_surface_sample::compute_bary_coord_in_triangle(
377 surface_positions_eval_, surface_corner_verts_eval_, tri_eval, hit_pos_eval_su);
378 const float2 uv = bke::attribute_math::mix3(bary_weights_eval,
379 surface_uv_map_eval_[tri_eval[0]],
380 surface_uv_map_eval_[tri_eval[1]],
381 surface_uv_map_eval_[tri_eval[2]]);
384 const ReverseUVSampler::Result result = reverse_uv_sampler_orig.sample(uv);
385 if (result.type != ReverseUVSampler::ResultType::Ok) {
386 found_invalid_uv_mapping_.store(true);
389 const int3 &tri_orig = surface_corner_tris_orig_[result.tri_index];
390 const float3 &bary_weights_orig = result.bary_weights;
393 const float3 &initial_normal_cu = slide_curve_info.initial_normal_cu;
394 const float3 new_normal_cu = math::normalize(
395 math::transform_point(transforms_.surface_to_curves_normal,
396 geometry::compute_surface_point_normal(
397 tri_orig, result.bary_weights, corner_normals_orig_su_)));
400 const float3 new_first_pos_orig_su = bke::attribute_math::mix3<float3>(
402 positions_orig_su[corner_verts_orig[tri_orig[0]]],
403 positions_orig_su[corner_verts_orig[tri_orig[1]]],
404 positions_orig_su[corner_verts_orig[tri_orig[2]]]);
405 const float3 old_first_pos_orig_cu = self_->initial_positions_cu_[first_point_i];
406 const float3 new_first_pos_orig_cu = math::transform_point(transforms_.surface_to_curves,
407 new_first_pos_orig_su);
410 const float4x4 slide_transform = this->get_slide_transform(
411 old_first_pos_orig_cu, new_first_pos_orig_cu, initial_normal_cu, new_normal_cu);
412 for (const int point_i : points) {
413 positions_orig_cu[point_i] = math::transform_point(
414 slide_transform, self_->initial_positions_cu_[point_i]);
416 surface_uv_coords[curve_i] = uv;