/* SPDX-FileCopyrightText: 2006 Blender Authors * * SPDX-License-Identifier: GPL-2.0-or-later */ /** \file * \ingroup bke * Implementation of generic geometry attributes management. This is built * on top of CustomData, which manages individual domains. */ #include #include #include "BKE_anonymous_attribute_id.hh" #include "MEM_guardedalloc.h" #include "DNA_ID.h" #include "DNA_curves_types.h" #include "DNA_customdata_types.h" #include "DNA_mesh_types.h" #include "DNA_pointcloud_types.h" #include "BLI_index_range.hh" #include "BLI_string.h" #include "BLI_string_utils.hh" #include "BLT_translation.hh" #include "BKE_attribute.hh" #include "BKE_attribute_legacy_convert.hh" #include "BKE_curves.hh" #include "BKE_customdata.hh" #include "BKE_deform.hh" #include "BKE_editmesh.hh" #include "BKE_grease_pencil.hh" #include "BKE_mesh.hh" #include "BKE_pointcloud.hh" #include "BKE_report.hh" #include namespace blender { using bke::AttrDomain; AttributeOwner AttributeOwner::from_id(ID *id) { if (id == nullptr) { return {}; } switch (GS(id->name)) { case ID_ME: return AttributeOwner(AttributeOwnerType::Mesh, id); case ID_PT: return AttributeOwner(AttributeOwnerType::PointCloud, id); case ID_CV: return AttributeOwner(AttributeOwnerType::Curves, id); case ID_GP: return AttributeOwner(AttributeOwnerType::GreasePencil, id); default: return {}; } } AttributeOwnerType AttributeOwner::type() const { return type_; } bool AttributeOwner::is_valid() const { return ptr_ != nullptr; } Mesh *AttributeOwner::get_mesh() const { BLI_assert(this->is_valid()); BLI_assert(type_ == AttributeOwnerType::Mesh); return reinterpret_cast(ptr_); } PointCloud *AttributeOwner::get_pointcloud() const { BLI_assert(this->is_valid()); BLI_assert(type_ == AttributeOwnerType::PointCloud); return reinterpret_cast(ptr_); } Curves *AttributeOwner::get_curves() const { BLI_assert(this->is_valid()); BLI_assert(type_ == AttributeOwnerType::Curves); return reinterpret_cast(ptr_); } GreasePencil *AttributeOwner::get_grease_pencil() const { BLI_assert(this->is_valid()); BLI_assert(type_ == AttributeOwnerType::GreasePencil); return reinterpret_cast(ptr_); } GreasePencilDrawing *AttributeOwner::get_grease_pencil_drawing() const { BLI_assert(this->is_valid()); BLI_assert(type_ == AttributeOwnerType::GreasePencilDrawing); return reinterpret_cast(ptr_); } bke::AttributeStorage *AttributeOwner::get_storage() const { switch (type_) { case AttributeOwnerType::Mesh: return &this->get_mesh()->attribute_storage.wrap(); case AttributeOwnerType::PointCloud: return &this->get_pointcloud()->attribute_storage.wrap(); case AttributeOwnerType::Curves: return &this->get_curves()->geometry.attribute_storage.wrap(); case AttributeOwnerType::GreasePencil: return &this->get_grease_pencil()->attribute_storage.wrap(); case AttributeOwnerType::GreasePencilDrawing: return &this->get_grease_pencil_drawing()->geometry.attribute_storage.wrap(); } BLI_assert(false); return nullptr; } std::optional AttributeOwner::get_accessor() const { switch (type_) { case AttributeOwnerType::Mesh: /* The attribute API isn't implemented for BMesh, so edit mode meshes are not supported. */ BLI_assert(this->get_mesh()->runtime->edit_mesh == nullptr); return this->get_mesh()->attributes_for_write(); case AttributeOwnerType::PointCloud: return this->get_pointcloud()->attributes_for_write(); case AttributeOwnerType::Curves: return this->get_curves()->geometry.wrap().attributes_for_write(); case AttributeOwnerType::GreasePencil: return this->get_grease_pencil()->attributes_for_write(); case AttributeOwnerType::GreasePencilDrawing: return this->get_grease_pencil_drawing()->geometry.wrap().attributes_for_write(); } BLI_assert(false); return std::nullopt; } struct DomainInfo { CustomData *customdata = nullptr; int length = 0; }; static std::array get_domains(BMesh *bm) { std::array info; info[int(AttrDomain::Point)].customdata = &bm->vdata; info[int(AttrDomain::Point)].length = bm->totvert; info[int(AttrDomain::Edge)].customdata = &bm->edata; info[int(AttrDomain::Edge)].length = bm->totedge; info[int(AttrDomain::Corner)].customdata = &bm->ldata; info[int(AttrDomain::Corner)].length = bm->totloop; info[int(AttrDomain::Face)].customdata = &bm->pdata; info[int(AttrDomain::Face)].length = bm->totface; return info; } static bool bke_attribute_rename_if_exists(AttributeOwner &owner, const StringRef old_name, const StringRef new_name, ReportList *reports) { const bke::AttributeStorage &storage = *owner.get_storage(); if (!storage.lookup(old_name)) { return false; } return BKE_attribute_rename(owner, old_name, new_name, reports); } static bool bke_attribute_rename_if_exists(AttributeOwner &owner, BMesh &bm, const StringRef old_name, const StringRef new_name, ReportList *reports) { BMDataLayerLookup attr = BM_data_layer_lookup(bm, old_name); if (!attr) { return false; } return BKE_attribute_rename(owner, old_name, new_name, reports); } static bool name_valid_for_builtin_domain_and_type(const bke::AttributeAccessor attributes, const StringRef name, const AttrDomain domain, const bke::AttrType data_type, ReportList *reports) { if (const std::optional metadata = attributes.get_builtin_domain_and_type(name)) { if (domain != metadata->domain) { BKE_reportf(reports, RPT_ERROR, "Domain unsupported for \"%s\" attribute", std::string(name).c_str()); return false; } if (data_type != metadata->data_type) { BKE_reportf( reports, RPT_ERROR, "Type unsupported for \"%s\" attribute", std::string(name).c_str()); return false; } } return true; } static bool mesh_attribute_valid(const Mesh &mesh, const StringRef name, const AttrDomain domain, const bke::AttrType data_type, ReportList *reports) { if (mesh.runtime->edit_mesh) { if (BM_attribute_stored_in_bmesh_builtin(name)) { BKE_report(reports, RPT_ERROR, "Unable to create attribute in edit mode"); return false; } } if (!name_valid_for_builtin_domain_and_type(mesh.attributes(), name, domain, data_type, reports)) { return false; } return true; } bool BKE_attribute_rename(AttributeOwner &owner, const StringRef old_name, const StringRef new_name, ReportList *reports) { if (BKE_attribute_required(owner, old_name)) { BLI_assert_msg(0, "Required attribute name is not editable"); return false; } if (new_name.is_empty()) { BKE_report(reports, RPT_ERROR, "Attribute name cannot be empty"); return false; } if (owner.type() == AttributeOwnerType::Mesh) { Mesh *mesh = owner.get_mesh(); if (BMEditMesh *em = mesh->runtime->edit_mesh.get()) { /* NOTE: Checking if the new name matches the old name only makes sense when the name * is clamped to its maximum length, otherwise assigning an over-long name multiple times * will add `.001` suffix unnecessarily. */ { const int new_name_maxncpy = CustomData_name_maxncpy_calc(new_name); /* NOTE: A function that performs a clamped comparison without copying would be handy. */ char new_name_clamped[MAX_CUSTOMDATA_LAYER_NAME]; new_name.copy_utf8_truncated(new_name_clamped, new_name_maxncpy); if (old_name == new_name_clamped) { return false; } } BMDataLayerLookup attr = BM_data_layer_lookup(*em->bm, old_name); if (!attr) { BKE_report(reports, RPT_ERROR, "Attribute is not part of this geometry"); return false; } if (!mesh_attribute_valid(*mesh, new_name, attr.domain, attr.type, reports)) { return false; } std::string result_name = BKE_attribute_calc_unique_name(owner, new_name); if (attr.type == bke::AttrType::Float2) { /* Rename UV sub-attributes. */ char buffer_src[MAX_CUSTOMDATA_LAYER_NAME]; char buffer_dst[MAX_CUSTOMDATA_LAYER_NAME]; bke_attribute_rename_if_exists(owner, *em->bm, BKE_uv_map_pin_name_get(old_name, buffer_src), BKE_uv_map_pin_name_get(result_name, buffer_dst), reports); } if (old_name == BKE_id_attributes_active_color_name(&mesh->id)) { BKE_id_attributes_active_color_set(&mesh->id, result_name); } if (old_name == BKE_id_attributes_default_color_name(&mesh->id)) { BKE_id_attributes_default_color_set(&mesh->id, result_name); } StringRef(result_name).copy_utf8_truncated(const_cast(attr.layer)->name); return true; } } bke::AttributeStorage &attributes = *owner.get_storage(); bke::Attribute *attr = attributes.lookup(old_name); if (!attr) { BKE_report(reports, RPT_ERROR, "Attribute is not part of this geometry"); return false; } if (owner.type() == AttributeOwnerType::Curves) { Curves *curves = owner.get_curves(); if (!name_valid_for_builtin_domain_and_type(curves->geometry.wrap().attributes(), new_name, attr->domain(), attr->data_type(), reports)) { return false; } } else if (owner.type() == AttributeOwnerType::Mesh) { Mesh *mesh = owner.get_mesh(); if (!mesh_attribute_valid(*mesh, new_name, attr->domain(), attr->data_type(), reports)) { return false; } if (attr->data_type() == bke::AttrType::Float2) { /* Rename UV sub-attributes. */ char buffer_src[MAX_CUSTOMDATA_LAYER_NAME]; char buffer_dst[MAX_CUSTOMDATA_LAYER_NAME]; bke_attribute_rename_if_exists(owner, BKE_uv_map_pin_name_get(attr->name(), buffer_src), BKE_uv_map_pin_name_get(new_name, buffer_dst), reports); } if (old_name == BKE_id_attributes_active_color_name(&mesh->id)) { BKE_id_attributes_active_color_set(&mesh->id, new_name); } if (old_name == BKE_id_attributes_default_color_name(&mesh->id)) { BKE_id_attributes_default_color_set(&mesh->id, new_name); } if (old_name == mesh->active_uv_map_name()) { mesh->uv_maps_active_set(new_name); } if (old_name == mesh->default_uv_map_name()) { mesh->uv_maps_default_set(new_name); } } attributes.rename(old_name, new_name); return true; } std::string BKE_attribute_calc_unique_name(const AttributeOwner &owner, const StringRef name) { const StringRef name_final = name.is_empty() ? DATA_("Attribute") : name; if (owner.type() == AttributeOwnerType::Mesh) { const Mesh &mesh = *owner.get_mesh(); /* While attribute names may collide with vertex group names, * it's important not to allow this when requesting a unique name * because #MutableAttributeAccessor::add will consider the layer as "existing", * and not add the new attribute as expected. See: #160029. */ const auto is_used_vertex_group = [&](const StringRef check_name) { return BKE_defgroup_name_index(&mesh.vertex_group_names, check_name) != -1; }; if (mesh.runtime->edit_mesh) { Set names; const auto add_names = [&](const CustomData &data) { for (const CustomDataLayer &layer : Span(data.layers, data.totlayer)) { if (CD_TYPE_AS_MASK(eCustomDataType(layer.type)) & CD_MASK_PROP_ALL) { names.add(layer.name); } } }; const BMesh &bm = *mesh.runtime->edit_mesh->bm; add_names(bm.vdata); add_names(bm.edata); add_names(bm.pdata); add_names(bm.ldata); return BLI_uniquename_cb( [&](const StringRef new_name) { return names.contains(new_name) || BM_attribute_stored_in_bmesh_builtin(new_name) || is_used_vertex_group(new_name); }, '.', name_final); } const bke::AttributeStorage &storage = *owner.get_storage(); return BLI_uniquename_cb( [&](const StringRef check_name) { return storage.lookup(check_name) != nullptr || is_used_vertex_group(check_name); }, '.', name_final); } bke::AttributeStorage &storage = *owner.get_storage(); return storage.unique_name_calc(name_final); } CustomDataLayer *BKE_attribute_new(Mesh &mesh, BMesh &bm, const StringRef name, const eCustomDataType type, const AttrDomain domain, ReportList *reports) { using namespace blender::bke; BLI_assert(mesh.runtime->edit_mesh->bm == &bm); const std::array info = get_domains(&bm); CustomData *customdata = info[int(domain)].customdata; if (customdata == nullptr) { BKE_report(reports, RPT_ERROR, "Attribute domain not supported by this geometry type"); return nullptr; } std::string uniquename = BKE_attribute_calc_unique_name(AttributeOwner::from_id(&mesh.id), name); if (!mesh_attribute_valid(mesh, name, domain, *custom_data_type_to_attr_type(type), reports)) { return nullptr; } BM_data_layer_add_named(&bm, customdata, type, uniquename.c_str()); const int index = CustomData_get_named_layer_index(customdata, type, uniquename); return (index == -1) ? nullptr : &(customdata->layers[index]); } static int color_name_to_index(AttributeOwner &owner, const StringRef name) { return BKE_attribute_to_index(owner, name, ATTR_DOMAIN_MASK_COLOR, CD_MASK_COLOR_ALL); } static int color_clamp_index(AttributeOwner &owner, int index) { const int length = BKE_attributes_length(owner, ATTR_DOMAIN_MASK_COLOR, CD_MASK_COLOR_ALL); return min_ii(index, length - 1); } static StringRef color_name_from_index(AttributeOwner &owner, int index) { return BKE_attribute_from_index(owner, index, ATTR_DOMAIN_MASK_COLOR, CD_MASK_COLOR_ALL) .value_or(""); } static int uv_name_to_index(AttributeOwner &owner, const StringRef name) { return BKE_attribute_to_index(owner, name, ATTR_DOMAIN_MASK_CORNER, CD_MASK_PROP_FLOAT2); } static int uv_clamp_index(AttributeOwner &owner, int index) { const int length = BKE_attributes_length(owner, ATTR_DOMAIN_MASK_CORNER, CD_MASK_PROP_FLOAT2); return min_ii(index, length - 1); } static StringRef uv_name_from_index(AttributeOwner &owner, int index) { return BKE_attribute_from_index(owner, index, ATTR_DOMAIN_MASK_CORNER, CD_MASK_PROP_FLOAT2) .value_or(""); } bool BKE_attribute_remove(AttributeOwner &owner, const StringRef name, ReportList *reports) { using namespace blender::bke; if (name.is_empty()) { BKE_report(reports, RPT_ERROR, "The attribute name must not be empty"); return false; } if (BKE_attribute_required(owner, name)) { BKE_reportf(reports, RPT_ERROR, "Attribute '%s' is required and cannot be removed", std::string(name).c_str()); return false; } if (owner.type() == AttributeOwnerType::Mesh) { Mesh *mesh = owner.get_mesh(); if (BMEditMesh *em = mesh->runtime->edit_mesh.get()) { const std::array info = get_domains(em->bm); for (const int domain : IndexRange(ATTR_DOMAIN_NUM)) { if (CustomData *data = info[domain].customdata) { const std::string name_copy = name; const int layer_index = CustomData_get_named_layer_index_notype(data, name_copy); if (layer_index == -1) { continue; } const eCustomDataType type = eCustomDataType(data->layers[layer_index].type); const bool is_active_uv_attribute = name_copy == mesh->active_uv_map_name(); const bool is_default_uv_attribute = name_copy == mesh->default_uv_map_name(); const bool is_active_color_attribute = name_copy.c_str() == StringRef(mesh->active_color_attribute); const bool is_default_color_attribute = name_copy.c_str() == StringRef(mesh->default_color_attribute); const int active_color_index = color_name_to_index(owner, mesh->active_color_attribute); const int default_color_index = color_name_to_index(owner, mesh->default_color_attribute); const int active_uv_index = uv_name_to_index(owner, mesh->active_uv_map_name()); const int default_uv_index = uv_name_to_index(owner, mesh->default_uv_map_name()); if (!BM_data_layer_free_named(em->bm, data, name_copy.c_str())) { BLI_assert_unreachable(); } if (is_active_color_attribute) { BKE_id_attributes_active_color_set( &mesh->id, color_name_from_index(owner, color_clamp_index(owner, active_color_index))); } if (is_default_color_attribute) { BKE_id_attributes_default_color_set( &mesh->id, color_name_from_index(owner, color_clamp_index(owner, default_color_index))); } if (is_active_uv_attribute) { mesh->uv_maps_active_set( uv_name_from_index(owner, uv_clamp_index(owner, active_uv_index))); } if (is_default_uv_attribute) { mesh->uv_maps_default_set( uv_name_from_index(owner, uv_clamp_index(owner, default_uv_index))); } if (type == CD_PROP_FLOAT2 && domain == int(AttrDomain::Corner)) { char buffer[MAX_CUSTOMDATA_LAYER_NAME]; BM_data_layer_free_named(em->bm, data, BKE_uv_map_pin_name_get(name_copy, buffer)); } return true; } } return false; } } std::optional attributes = owner.get_accessor(); if (!attributes) { return false; } if (owner.type() == AttributeOwnerType::Mesh) { const std::string name_copy = name; std::optional metadata = attributes->lookup_meta_data(name_copy); if (!metadata) { return false; } /* Update active and default color attributes. */ Mesh *mesh = owner.get_mesh(); const bool is_active_color_attribute = name_copy == StringRef(mesh->active_color_attribute); const bool is_default_color_attribute = name_copy == StringRef(mesh->default_color_attribute); const bool is_active_uv_attribute = name_copy == mesh->active_uv_map_name(); const bool is_default_uv_attribute = name_copy == mesh->default_uv_map_name(); const int active_color_index = color_name_to_index(owner, mesh->active_color_attribute); const int default_color_index = color_name_to_index(owner, mesh->default_color_attribute); const int active_uv_index = uv_name_to_index(owner, mesh->active_uv_map_name()); const int default_uv_index = uv_name_to_index(owner, mesh->default_uv_map_name()); if (!attributes->remove(name_copy)) { BLI_assert_unreachable(); } if (is_active_color_attribute) { BKE_id_attributes_active_color_set( &mesh->id, color_name_from_index(owner, color_clamp_index(owner, active_color_index))); } if (is_default_color_attribute) { BKE_id_attributes_default_color_set( &mesh->id, color_name_from_index(owner, color_clamp_index(owner, default_color_index))); } if (is_active_uv_attribute) { mesh->uv_maps_active_set(uv_name_from_index(owner, uv_clamp_index(owner, active_uv_index))); } if (is_default_uv_attribute) { mesh->uv_maps_default_set( uv_name_from_index(owner, uv_clamp_index(owner, default_uv_index))); } if (bke::mesh::is_uv_map(metadata)) { char buffer[MAX_CUSTOMDATA_LAYER_NAME]; attributes->remove(BKE_uv_map_pin_name_get(name_copy, buffer)); } return true; } return attributes->remove(name); } int BKE_attributes_length(const AttributeOwner &owner, const AttrDomainMask domain_mask, const eCustomDataMask mask, const bool include_anonymous) { if (owner.type() == AttributeOwnerType::Mesh) { const Mesh &mesh = *owner.get_mesh(); if (BMEditMesh *em = mesh.runtime->edit_mesh.get()) { const std::array info = get_domains(em->bm); int length = 0; for (const int domain : IndexRange(ATTR_DOMAIN_NUM)) { const CustomData *customdata = info[domain].customdata; if (customdata == nullptr) { continue; } if (!customdata || !((1 << int(domain)) & domain_mask)) { continue; } for (const CustomDataLayer &layer : Span(customdata->layers, customdata->totlayer)) { if (!(mask & CD_TYPE_AS_MASK(eCustomDataType(layer.type)))) { continue; } if (!include_anonymous && bke::attribute_name_is_anonymous(layer.name)) { continue; } length++; } } return length; } } const bke::AttributeStorage &storage = *owner.get_storage(); if (include_anonymous && domain_mask == ATTR_DOMAIN_MASK_ALL && mask == CD_MASK_PROP_ALL) { return storage.count(); } return std::count_if(storage.begin(), storage.end(), [&](const bke::Attribute &attr) { if (!(ATTR_DOMAIN_AS_MASK(attr.domain()) & domain_mask)) { return false; } if (!(CD_TYPE_AS_MASK(*bke::attr_type_to_custom_data_type(attr.data_type())) & mask)) { return false; } if (!include_anonymous && bke::attribute_name_is_anonymous(attr.name())) { return false; } return true; }); } AttrDomain BKE_attribute_domain(const Mesh &mesh, const BMesh &bm, const CustomDataLayer *layer) { BLI_assert(mesh.runtime->edit_mesh->bm == &bm); UNUSED_VARS_NDEBUG(mesh); const std::array info = get_domains(&const_cast(bm)); for (const int domain : IndexRange(ATTR_DOMAIN_NUM)) { const CustomData *customdata = info[domain].customdata; if (customdata == nullptr) { continue; } if (Span(customdata->layers, customdata->totlayer).contains_ptr(layer)) { return AttrDomain(domain); } } BLI_assert_msg(0, "Custom data layer not found in geometry"); return AttrDomain(AttrDomain::Point); } int BKE_attribute_domain_size(const AttributeOwner &owner, const int domain) { if (owner.type() == AttributeOwnerType::Mesh) { const Mesh &mesh = *owner.get_mesh(); if (BMEditMesh *em = mesh.runtime->edit_mesh.get()) { const BMesh &bm = *em->bm; const std::array info = get_domains(&const_cast(bm)); return info[domain].length; } } const bke::AttributeAccessor attributes = *owner.get_accessor(); return attributes.domain_size(bke::AttrDomain(domain)); } bool BKE_attribute_required(const AttributeOwner &owner, const StringRef name) { switch (owner.type()) { case AttributeOwnerType::PointCloud: return BKE_pointcloud_attribute_required(owner.get_pointcloud(), name); case AttributeOwnerType::Curves: return BKE_curves_attribute_required(owner.get_curves(), name); case AttributeOwnerType::Mesh: return BKE_mesh_attribute_required(name); case AttributeOwnerType::GreasePencil: return false; case AttributeOwnerType::GreasePencilDrawing: return BKE_grease_pencil_drawing_attribute_required(owner.get_grease_pencil_drawing(), name); } return false; } std::optional BKE_attributes_active_name_get(AttributeOwner &owner) { using namespace blender::bke; int active_index = *BKE_attributes_active_index_p(owner); if (active_index == -1) { return std::nullopt; } if (owner.type() == AttributeOwnerType::Mesh) { const Mesh *mesh = owner.get_mesh(); if (BMEditMesh *em = mesh->runtime->edit_mesh.get()) { if (active_index > BKE_attributes_length(owner, ATTR_DOMAIN_MASK_ALL, CD_MASK_PROP_ALL)) { active_index = 0; } const std::array info = get_domains(em->bm); int index = 0; for (const int domain : IndexRange(ATTR_DOMAIN_NUM)) { CustomData *customdata = info[domain].customdata; if (customdata == nullptr) { continue; } for (int i = 0; i < customdata->totlayer; i++) { CustomDataLayer *layer = &customdata->layers[i]; if (CD_MASK_PROP_ALL & CD_TYPE_AS_MASK(eCustomDataType(layer->type))) { if (index == active_index) { if (bke::allow_procedural_attribute_access(layer->name)) { return layer->name; } return std::nullopt; } index++; } } } return std::nullopt; } } bke::AttributeStorage &storage = *owner.get_storage(); if (!IndexRange(storage.count()).contains(active_index)) { return std::nullopt; } return storage.at_index(active_index).name(); } void BKE_attributes_active_set(AttributeOwner &owner, const StringRef name) { BLI_assert(bke::allow_procedural_attribute_access(name)); if (owner.type() == AttributeOwnerType::Mesh) { const Mesh *mesh = owner.get_mesh(); if (mesh->runtime->edit_mesh) { const int index = BKE_attribute_to_index( owner, name, ATTR_DOMAIN_MASK_ALL, CD_MASK_PROP_ALL); *BKE_attributes_active_index_p(owner) = index; return; } } bke::AttributeStorage &attributes = *owner.get_storage(); *BKE_attributes_active_index_p(owner) = attributes.index_of(name); } void BKE_attributes_active_clear(AttributeOwner &owner) { *BKE_attributes_active_index_p(owner) = -1; } int *BKE_attributes_active_index_p(AttributeOwner &owner) { switch (owner.type()) { case AttributeOwnerType::PointCloud: { return &owner.get_pointcloud()->attributes_active_index; } case AttributeOwnerType::Mesh: { return &owner.get_mesh()->attributes_active_index; } case AttributeOwnerType::Curves: { return &owner.get_curves()->geometry.attributes_active_index; } case AttributeOwnerType::GreasePencil: { return &owner.get_grease_pencil()->attributes_active_index; } case AttributeOwnerType::GreasePencilDrawing: { return &owner.get_grease_pencil_drawing()->geometry.attributes_active_index; } } return nullptr; } void BKE_attributes_active_index_validate(AttributeOwner &owner) { int *active_index = BKE_attributes_active_index_p(owner); if (*active_index < 0) { /* Mark none as active. */ *active_index = -1; return; } const int attributes_num = BKE_attributes_length(owner, ATTR_DOMAIN_MASK_ALL, CD_MASK_PROP_ALL); if (attributes_num == 0) { /* Mark none as active. */ *active_index = -1; return; } /* First try downwards. */ int index_check = *active_index; while (index_check >= 0) { if (index_check < attributes_num) { std::optional attribute_name_check = BKE_attribute_from_index( owner, index_check, ATTR_DOMAIN_MASK_ALL, CD_MASK_PROP_ALL); if (attribute_name_check.has_value() && bke::allow_procedural_attribute_access(attribute_name_check.value())) { *active_index = index_check; return; } } index_check--; } /* Still not found? Try upwards. */ index_check = *active_index + 1; while (index_check < attributes_num) { std::optional attribute_name_check = BKE_attribute_from_index( owner, index_check, ATTR_DOMAIN_MASK_ALL, CD_MASK_PROP_ALL); if (attribute_name_check.has_value() && bke::allow_procedural_attribute_access(attribute_name_check.value())) { *active_index = index_check; return; } index_check++; } /* Still not found? Mark none as active. */ *active_index = -1; } std::optional BKE_attribute_from_index(AttributeOwner &owner, const int lookup_index, const AttrDomainMask domain_mask, const eCustomDataMask layer_mask, const bool include_anonymous) { if (owner.type() == AttributeOwnerType::Mesh) { const Mesh &mesh = *owner.get_mesh(); if (BMEditMesh *em = mesh.runtime->edit_mesh.get()) { const BMesh &bm = *em->bm; const std::array info = get_domains(&const_cast(bm)); int index = 0; for (const int domain : IndexRange(ATTR_DOMAIN_NUM)) { CustomData *customdata = info[domain].customdata; if (!customdata || !((1 << int(domain)) & domain_mask)) { continue; } for (const CustomDataLayer &layer : Span(customdata->layers, customdata->totlayer)) { if (!(layer_mask & CD_TYPE_AS_MASK(eCustomDataType(layer.type)))) { continue; } if (!include_anonymous && bke::attribute_name_is_anonymous(layer.name)) { continue; } if (index == lookup_index) { return layer.name; } index++; } } return std::nullopt; } } bke::AttributeStorage &storage = *owner.get_storage(); if (domain_mask == ATTR_DOMAIN_MASK_ALL && layer_mask == CD_MASK_PROP_ALL) { return storage.at_index(lookup_index).name(); } int index = 0; for (const bke::Attribute &attr : storage) { if (!(ATTR_DOMAIN_AS_MASK(attr.domain()) & domain_mask)) { continue; } if (!(CD_TYPE_AS_MASK(*bke::attr_type_to_custom_data_type(attr.data_type())) & layer_mask)) { continue; } if (!include_anonymous && bke::attribute_name_is_anonymous(attr.name())) { continue; } if (index == lookup_index) { return attr.name(); } index++; } return std::nullopt; } int BKE_attribute_to_index(const AttributeOwner &owner, const StringRef name, AttrDomainMask domain_mask, eCustomDataMask layer_mask, const bool include_anonymous) { if (owner.type() == AttributeOwnerType::Mesh) { const Mesh &mesh = *owner.get_mesh(); if (BMEditMesh *em = mesh.runtime->edit_mesh.get()) { const std::array info = get_domains(em->bm); int index = 0; for (const int domain : IndexRange(ATTR_DOMAIN_NUM)) { const CustomData *customdata = info[domain].customdata; if (!customdata || !((1 << int(domain)) & domain_mask)) { continue; } for (const CustomDataLayer &layer : Span(customdata->layers, customdata->totlayer)) { if (!(layer_mask & CD_TYPE_AS_MASK(eCustomDataType(layer.type)))) { continue; } if (!include_anonymous && bke::attribute_name_is_anonymous(layer.name)) { continue; } if (layer.name == name) { return index; } index++; } } return -1; } } const bke::AttributeStorage &storage = *owner.get_storage(); if (domain_mask == ATTR_DOMAIN_MASK_ALL && layer_mask == CD_MASK_PROP_ALL) { return storage.index_of(name); } int index = 0; for (const bke::Attribute &attr : storage) { if (!(ATTR_DOMAIN_AS_MASK(attr.domain()) & domain_mask)) { continue; } if (!(CD_TYPE_AS_MASK(*bke::attr_type_to_custom_data_type(attr.data_type())) & layer_mask)) { continue; } if (!include_anonymous && bke::attribute_name_is_anonymous(attr.name())) { continue; } if (attr.name() == name) { return index; } index++; } return -1; } std::optional BKE_id_attributes_active_color_name(const ID *id) { if (GS(id->name) == ID_ME) { return reinterpret_cast(id)->active_color_attribute; } return std::nullopt; } std::optional BKE_id_attributes_default_color_name(const ID *id) { if (GS(id->name) == ID_ME) { return reinterpret_cast(id)->default_color_attribute; } return std::nullopt; } void BKE_id_attributes_active_color_set(ID *id, const std::optional name) { switch (GS(id->name)) { case ID_ME: { Mesh *mesh = reinterpret_cast(id); MEM_SAFE_DELETE(mesh->active_color_attribute); if (name) { mesh->active_color_attribute = BLI_strdupn(name->data(), name->size()); } break; } default: break; } } void BKE_id_attributes_active_color_clear(ID *id) { switch (GS(id->name)) { case ID_ME: { Mesh *mesh = reinterpret_cast(id); MEM_SAFE_DELETE(mesh->active_color_attribute); break; } default: break; } } void BKE_id_attributes_default_color_set(ID *id, const std::optional name) { switch (GS(id->name)) { case ID_ME: { Mesh *mesh = reinterpret_cast(id); MEM_SAFE_DELETE(mesh->default_color_attribute); if (name) { mesh->default_color_attribute = BLI_strdupn(name->data(), name->size()); } break; } default: break; } } bool BKE_id_attributes_color_find(const ID *id, const StringRef name) { AttributeOwner owner = AttributeOwner::from_id(const_cast(id)); return BKE_attribute_to_index(owner, name, ATTR_DOMAIN_MASK_COLOR, CD_MASK_COLOR_ALL) != -1; } StringRef BKE_uv_map_pin_name_get(const StringRef uv_map_name, char *buffer) { BLI_assert(strlen(UV_PINNED_NAME) == 2); BLI_assert(uv_map_name.size() < MAX_CUSTOMDATA_LAYER_NAME - 4); const auto result = fmt::format_to_n( buffer, MAX_CUSTOMDATA_LAYER_NAME, ".{}.{}", UV_PINNED_NAME, uv_map_name); return StringRef(buffer, result.size); } } // namespace blender